变压器励磁涌流抑制外文翻译

合集下载

变压器专业英语翻译

变压器专业英语翻译

变压器专业英语翻译1、元件设备三绕组变压器:three-column transformer ThrClnTrans双绕组变压器:double-column transformer DblClmnTrans 电容器:Capacitor并联电容器:shunt capacitor电抗器:Reactor母线:Busbar输电线:TransmissionLine发电厂:power plant断路器:Breaker刀闸(隔离开关):Isolator分接头:tap电动机:motor-------------------------------------------------------------------------------- 2、状态参数有功:active power无功:reactive power电流:current容量:capacity电压:voltage档位:tap position无功损耗:reactive loss有功损耗:active loss功率因数:power-factor功率:power功角:power-angle电压等级:voltage grade空载损耗:no-load loss铁损:iron loss铜损:copper loss空载电流:no-load current阻抗:impedance正序阻抗:positive sequence impedance 负序阻抗:negative sequence impedance 零序阻抗:zero sequence impedance电阻:resistor电抗:reactance电导:conductance电纳:susceptance无功负载:reactive load 或者QLoad有功负载: active load Load遥测:YC(telemetering)遥信:YX励磁电流(转子电流):magnetizing current 定子:stator功角:power-angle上限:upper limit下限:lower limit并列的:apposable高压: high voltage低压:low voltage中压:middle voltage电力系统power system发电机generator励磁excitation励磁器excitor电压voltage电流current母线bus变压器transformer升压变压器step-up transformer高压侧high side输电系统power transmission system输电线transmission line固定串联电容补偿fixed series capacitor compensation 稳定stability电压稳定voltage stability功角稳定angle stability暂态稳定transient stability电厂power plant能量输送power transfer交流AC装机容量installed capacity电网power system落点drop point开关站switch station双回同杆并架double-circuit lines on the same tower 变电站transformer substation补偿度degree of compensation高抗high voltage shunt reactor无功补偿reactive power compensation故障fault调节regulation裕度magin三相故障three phase fault故障切除时间fault clearing time极限切除时间critical clearing time切机generator triping高顶值high limited value强行励磁reinforced excitation线路补偿器LDC(line drop compensation)机端generator terminal静态static (state)动态dynamic (state)单机无穷大系统one machine - infinity bus system 机端电压控制AVR电抗reactance电阻resistance功角power angle有功(功率)active power无功(功率)reactive power功率因数power factor无功电流reactive current下降特性droop characteristics斜率slope额定rating变比ratio参考值reference value电压互感器T分接头tap下降率droop rate仿真分析simulation analysis传递函数transfer function框图block diagram受端receive-side裕度margin同步synchronization失去同步loss of synchronization 阻尼damping摇摆swing保护断路器circuit breaker电阻:resistance电抗:reactance阻抗:impedance电导:conductance电纳:susceptance导纳:admittance电感:inductance电容: capacitance-------------------------------------------------------------------------------- Absorber Circuit ——吸收电路AC/AC Frequency Converter ——交交变频电路AC power control ——交流电力控制AC ower Controller ——交流调功电路AC Power Electronic Switch ——交流电力电子开关Ac Voltage Controller ——交流调压电路Asynchronous Modulation ——异步调制Baker Clamping Circuit ——贝克箝位电路Bi-directional Triode Thyristor ——双向晶闸管Bipolar Junction Transistor-- BJT ——双极结型晶体管Boost-Buck Chopper ——升降压斩波电路Boost Chopper ——升压斩波电路Boost Converter ——升压变换器Bridge Reversible Chopper ——桥式可逆斩波电路Buck Chopper ——降压斩波电路Buck Converter ——降压变换器Commutation ——换流Conduction Angle ——导通角Constant Voltage Constant Frequency --CVCF ——恒压恒频Continuous Conduction--CCM ——(电流)连续模式Control Circuit ——控制电路Cuk Circuit ——CUK斩波电路Current Reversible Chopper ——电流可逆斩波电路Current Source Type Inverter--CSTI ——电流(源)型逆变电路Cycloconvertor ——周波变流器DC-AC-DC Converter ——直交直电路DC Chopping ——直流斩波DC Chopping Circuit ——直流斩波电路DC-DC Converter ——直流-直流变换器Device Commutation ——器件换流Direct Current Control ——直接电流控制Discontinuous Conduction mode ——(电流)断续模式displacement factor ——位移因数distortion power ——畸变功率double end converter ——双端电路driving circuit ——驱动电路electrical isolation ——电气隔离fast acting fuse ——快速熔断器fast recovery diode ——快恢复二极管fast recovery epitaxial diodes ——快恢复外延二极管fast switching thyristor ——快速晶闸管field controlled thyristor ——场控晶闸管flyback converter ——反激电流forced commutation ——强迫换流forward converter ——正激电路frequency converter ——变频器full bridge converter ——全桥电路full bridge rectifier ——全桥整流电路full wave rectifier ——全波整流电路fundamental factor ——基波因数gate turn-off thyristor——GTO ——可关断晶闸管general purpose diode ——普通二极管giant transistor——GTR ——电力晶体管half bridge converter ——半桥电路hard switching ——硬开关high voltage IC ——高压集成电路hysteresis comparison ——带环比较方式indirect current control ——间接电流控制indirect DC-DC converter ——间接DC- DC转换器insulated-gate bipolar transistor---IGBT ——绝缘栅双极晶体管intelligent power module---IPM ——智能功率模块integrated gate-commutated thyristor---IGCT ——集成门极换流晶闸管inversion ——逆变latching effect ——擎住效应leakage inductance ——漏感light triggered thyristo---LTT ——光控晶闸管line commutation ——电网换流load commutation ——负载换流loop current ——环流。

电力系统专业单词中英文对照

电力系统专业单词中英文对照

常用专业词汇中英文对照屏蔽双绞pair twisted screened常闭接点normally closed contact常开接点normally open contact备自投Automatic Takeover to Stand-by Supply遥信Remote indicationUnit-generator step-up transformers发变组Be subject to 服从于Step-up transformer升压变High-side(high voltage side) of the transformer变压器高压侧Low-side of the transtormer变压器低压侧Magnetizing inrush current励磁涌流Undervoltage Load Shedding 低电压甩负荷Margin 余地边界页面空白利润Yield 产生Dilute 冲淡稀释This includes compliance with IEEE and IEC standards for electrostatic discharge, fast transients, radiated emissions, surge-withstand capability, dielectric strength, pulsed magnetic fields, and disturbances.Specify optional具体指定的选择Open CT-------CT断线open or shorted CT conditions-------CT断线或短路状态including single- and dual-busbar, transfer-bus, tie-breaker分段Buscoupler 母联(母线并联)breaker-and-a-half, ring-bus, and double-bus/double-breakerconfigurations.重瓦斯heavy gasAccessories附件Bypass旁路,分流,绕开Inflexion拐点is converted to转换为over-current blocked by complex voltage复合电压闭锁过流Advances the State of the Art先进的技术发展水平act in concert(音乐会)with与…相呼应in minimum operation mode 最小运行方式in conjunction with与…协力disconnect auxiliary contacts. 隔离刀辅助接点(SEL说明书)Buscoupler母联(SEL说明书)tie-breaker分断断路器(SEL说明书)Coupler Security Logic母联逻辑(SEL说明书)Tag n标签,vt加标签Put tag贴标签Have you put tags on your luggage?Transfer Bus 旁母Main bus 主母Dedicated 专用的优点与缺点advantages and disadvantages极性标记(同名端)Polarity markconservative settings 保守的定值(笨的定值)开口三角Broken-Delta ;Open-Delta减出力decrease power output突然加电inadvertent energization励磁field失磁out-of-field合闸位置 closed position(肯定对)分闸位置 open position(肯定对)/trip position防跳 antibumping原理图Elementary Diagram接线图 Wiring Diagram单线图 One Line Diagram方块图、结构图 Block Diagram展开图 Developing Diagram简图 Schematic Diagram略图 Schema控制转换开关Control and Transfer Switch多层开关 Multiple Switch多功能开关 Multi-Function Switch把手、手柄 Handle端子箱 Terminal Cabinet端子排 Terminal Block监视 Monitoring测量 Metering瓦斯保护继电器 Buchholz Protector动作机理Mechanism of Action操作机构Operation Mechanism转换 Commutate保护动作 Protection Action启动 Starting up升高/降低(动) Raise/Go down升高/降低(动) Raise/Reduce增加/减少 Increase/Decrease高/低(名) Upper/lower接地 Grounding接地 Earthing压板 Clamp辅助结点 Auxiliary Contact电流回路测试盒 Test Block隔离刀闸 Isolator隔离刀闸 Disconnectorshielded twisted pair屏蔽双绞线intelligent electrical device 智能测控装置generator 发电机transformer 变压器/互感器motor 电动机meter 仪表power automation system 电力自动化系统phase mark相别substation automation system 变电站自动化系统oscillation /swing振荡chip 芯片resolution 分辨率relay 继电器parameter 参数frequency 频率power factor 功率因数2×16 character liquid crystal display 2行X16字符液晶显示dual RS485 communication interface 带双路RS-485通信接口three-phase voltage/current input 三相电压/电流输入active power 有功功率reactive power 无功功率configuration 配置maintenance 维护debugging 调试live wire 火线SOE(sequence of event) 事件顺序记录transient process暂态过程Input/output 输入/输出transducer 变送器rated voltage/current/frequency 额定电压/电流/频率impedance 阻抗earthing resistance 接地电阻circuit breakers 断路器vacuum circuit breakers 真空断路器rated main busbar current 主母线额定电流enclosure/internal 外壳/内部supply voltage/current 电源电压/电流petrolic engine 汽油发动机diesel engine 柴油发动机micro ammeter 微安表high voltage testing transformer 高压试验变压器metallic door handle金属门把手DC double bridge 直流双臂电桥transformer ratio bridge 变压比电桥relay protection tester 继电保护测试仪micro ohmmeter 微电阻测量仪earthing resistance meter 接地电阻表digital multimeter数字万用表megohmmeter 兆欧表electronic megohmmeter 电子兆欧表power distribution compartment 配电室alternation switch 转换开关high/low voltage switchgear高/低压开关柜earthing knife switch 接地刀开关interlocking device 连锁装置hexagonal rotation axis 六角转轴back cover board 后盖板fuse 熔断器AI (analog input) 模拟量/遥测量cable incoming, outgoing 电缆进、出线breaking capacity 开断容量arrester 避雷器electrical equipment 电气设备busbar 母线load switch 负荷开关secondary components 二次元件truck 手车earthing line 接地线coil 线圈contactor 接触器sensor 传感器winding 绕组high voltage output 高压输出AC withstand voltage test 交流耐压试验earthing bar 接地棒attracting voltage 吸合电压releasing voltage 释放电压protection device sampling debugging 装置采样调试protection device instantaneous over-current debugging 装置速断保护调试protection device definite-time over-current debugging 装置过流保护调试zero-sequence protection debugging 装置零序保护调试pressure relief flap压力释放板branched busbar 分支母线bottom board 底板removable partition装卸式隔板secondary plug二次插头small busbar terminal box 小母线端子terminal block端子排disconnect contact device 隔离触头装置control wire duct控制线槽feeder 一回输电线路semiconductor 半导体mechanical endurance机械寿命electrical endurance 电寿命operation startup current 操作启动电流rectifier 整流器tripping current of the opening coil 分闸线圈脱扣电流monitor 监视器connection diagrams 接线图polarity极性power supply units and master modules 主控机与电源单元coupling modules 耦合模块accessories 附件analog modules 模拟量模块application modules 应用模块digital input/output modules 数字量输入/输出模块brake contact制动接点overvoltage protection module 过电压保护模块station board 配电屏electromechanical 机电一体thermistor 热敏电阻baud rate 波特率superconductor 超导体power plant 发电厂tap 分接头LED(light-emitting diode)发光二极管controller 控制器hydraulic power plant 水电站instrument board 仪表盘UPS (Uninterruptable Power Supply) 不间断电源indicator 指示器DC (direct current) 直流AC (alternating current) 交流active defect 运行故障active output 有功输出active-power loss 有功功率损耗active standard 现行标准AC voltage stabilizer 交流稳压器pulse 脉冲air switch 空气开关water vapor 水蒸汽terminal board 接线板short-circuit 短路shielding layer 屏蔽层export 导出electricity measurement 电量测量signal acquisition 信号采集LCD (liquid crystal display) 液晶显示remote communication 远程通信dual RS485 communication interface 双路RS485通信接口three-phase voltage/current input 三相电压/电流输入protocol 规约,协议four digital inputs 4路数字量输入rolling record 循环记录V,I,P,Q,F,Cosф,E电压、电流、有功功率、无功功率、频率、功率因数、有功电度voltage/current transformation ratio 电压/电流变比photoelectric isolation 光电隔离PT (potential transformer) 电压互感器default value 默认值CT (current transformer) 电流互感器calibration parameter 校准参数RMS (root mean square) 均方根,有效值filmy button 薄膜按键Wye system 星形系统energy counter input 电度chain controller 回路控制器message format 报文格式DI (digital input) 遥信量real-time data 实时数据power energy 电能front panel 面板bit change 变位electromagnetic fields 电磁场intelligent switching cabinet 智能开关柜form-C dry contact C型干触点Integrated substation automation 变电站综合自动化Harmonic 谐波Wave recorder 录波Workstation 工作站Public electric utility 市电电源Central alarm unit for electric fire leakage 电气火灾漏电集中告警器Computer protection system计算机保护系统Industry and building substation and distribution automation system 工业及楼宇变配电自动化系统Communication control unit 通讯主控单元Three-phase operation box 三相操作箱Voltage switch box 电压切换箱Transformer extension relay box 变压器重动箱Neutral point earthing resistance cubicle 中性点接地电阻柜Hydraulic car crane 液压汽车吊Automotive truck 载重汽车Coach 载人客车Mobile machinery shop with four seats 双排座工程车Hydraulic fork lift truck液压叉车Engine driven capstan 机动缴磨Welding machine 电焊机Press pliers压接钳Chain wheel 链条葫芦Bench drill 台钻Electric portable drill 手电钻Churn drill 冲击钻Jack 千斤顶Welding tool 气焊工具Electromotive refacer 电动磨光机Petrol gas heating 石油气加热项目Bolt clipper 断线钳Tensile strength meter 拉力表Moment spanner 力矩扳手Adjustable auto transformer 自藕调压器Phase sequence meter 相序表Withstand voltage tester 耐压试验装置Water level 水准仪Stop watch 秒表Micro-ohmmeter 微欧计Micro-processor protection panel 微机保护屏Fundamental current 基波电流Power transmission and substation engineering 输变电工程Electric Supply Authority 供电局Schweitzer Engineering Laboratories SEL公司全称储能 charging合闸 closing分闸 opening绝缘 insulation性能 performance过载 overload故障 fault多路传输 multiplex transmission备用 back-up比特、位 bit检修 overhaul冗余的 redundancy消耗 consumption冷却 cooling有功的active放大 amplify人造的 artificial手工的,人工的 manualFARAD 200 SEA4.0软件类(software)parallel interface 并行接口serial interface 串行接口application management 应用程序管理clipboard 剪贴板event system 事件系统browser 浏览器event log 事件日志removable storage 可移动存储routing and remote access 路由与远程访问server 服务器daily qualification rate 日合格率inhibit operation 禁止操作tele-indication blockage 遥信封锁invalid object 对象无效exactitude rate/success rate 正确率/成功率event handling 事件处理designer 设计人员operator 操作人员remote access server 远程访问服务器paste function 粘贴函数database 数据库file 文件edit 编辑view 视图insert (v.) insertion (n.) 插入tools 工具format 格式paste special 选择性粘贴alignment 对齐font 字体favorite 收藏夹peak value 峰值valley value 谷值normal(level) value 平值hyperlink 超级链接development environment 开发环境operation environment 运行环境graphic edit 图形编辑alarm event and handling 报警事件及处理PDR and recurrence 事故追忆与重演history data and real-time data retrieval 历史数据与实时数据检索fault diagnosis 故障诊断dual computers hot standby 双机热备remote maintenance 远程维护front controller 前端控制器thread 线程multimedia graphical user interface 多媒体图形界面transparent network technology 透明网络技术data acquisition technology 数据采集技术micro-kernel control and dispatching technology 微内核控制调度技术virtual reality scenes 虚拟现实场景variable 变量node 节点dynamic/line/fill/text property 动态/线/填充/文本属性time strings 时间串hotkey 热键alarm dead band 报警死区customization 定制reference frequency 基准频率window position fixation 窗口位置固定initialization full-screen display 初始化全屏显示initialization picture adaptation 初始化画面自适应task manager 任务管理器alarm appearance color 报警消失颜色synchronization 同步network congestion 网络堵塞supervisory control picture 监控画面homepage 主页print preview 打印预览standard serial port communication 标准串口通讯slash 斜线backslash 反斜线more/greater than 大于号less than 小于号asterisk 星号period 句号question mark 问号quotation mark 引号vertical bar 竖线transverse line 横线colon 冒号semicolon 分号parity check 奇偶校验data mapping table 数据映射表scroll bar 滚动条refresh 刷新list box 列表框bypass replacement 旁路替代bitmap file 位图文件consolidate 合并gateway 网关grid structure 网状结构subassembly programming 组件编程single-server 单机multi-server 多机browsing station 浏览站ODBC: Open Database Connectivity 开放式数据库互连distributed system architecture 分布式系统结构template database 模版库dual-device/computers/network redundancy 双设备/机/网络冗余history/curve database 历史/曲线数据库alarm voice file 报警语音文件pop-up picture file 弹出画面文件default path 缺省路径high-density curve 高密度曲线analog data overview模拟量一览digital data overview 开关量一览counter input data overview 电度量一览real-time alarm 实时报警communication fault 通讯故障report system 报表系统electrical report function 电力报表函数load 加载invoke 调用communication driver 通讯驱动snapshot 快照expression 表达式operational status 运行状况user manual 用户手册free disk space 硬盘余留空间program group 程序组registration number 注册号system/network configuration 系统/网络配置user right 用户权限auto start 自动启动password 口令shortcut 快捷方式directory for storing executable program 可执行程序存放目录auto logon 自动登录operation ticket 操作票symbol directory 图元库目录menu bar 菜单栏activate 激活project database 工程数据库table control 表格控件enable dual-computers hot standby 双机热备投用standby server query period 备机查询周期timeout time 超时时间history database synchronization days 历史数据库同步天数computer table 计算机表dial-up workstation 拨号工作站standard serial port communication 标准串口通讯upper/lower computer 上/下位机remark 备注object table 对象表logic relationship 逻辑关系interval 间隔deletion (n.) delete (v.) 删除power equipment 电力设备read only 只读prompt 提示subdirectory 子目录current directory 当前目录command/channel timeout 命令/通道超时master station address 主站地址title bar 标题栏toolbar 工具栏previous 上页next 下页picture file 图形文件real-time bar chart 实时棒图subsection electricity bar chart 分段电量棒图logout 退出,退路multi-electricity pie chart 多电量饼图printout 打印输出print setup 打印设置zoom in 缩小zoom out 放大scroll display 滚动显示daily/monthly report 日/月报表unqualified daily minutes 日不合格分钟数average value 平均值monthly trips due to faults月故障跳闸次数monthly repair time 月检修时间reactor电抗器The fuse blew out and the house was in darkness.保险丝烧断使得整个房子漆黑一片。

变压器常用中英对照

变压器常用中英对照

变压器常用中英对照1、安全隔离变压器safety isolating transformer2、安全特低电压(SELV)safety extra-low voltageB1、棒式电流互感器bar primary type current transformer2、包封线圈的干式变压器encapsulated-winding dry-type transformer3、包封线圈干式电抗器encapsulated-winding dry-type reactor4、饱和电抗器saturable reactor5、保护用电流互感器protective current transformer6、保护用电压互感器protective voltage transformer7、保护装置(电容式电压互感器)protective device (of a capacitor voltage transformer)8、变磁通调压variable flux voltage variation (VFVV)9、变流变压器converter transformer10、变压器transformer11、变压器效率efficiency of transformer12、并联电抗器shunt reactor13、并联控制装置parallel control devices14、饼式线圈disc winding15、箔式线圈foil winding16、波纹式油箱corrugated type tank17、不接地电压互感器unearthed voltage transformerC1、操作计数器operation counter2、操作循环cycle of operation3、测量用电流互感器measuring current transformer4、测量用电压互感器measuring voltage transformer5、层式线圈layer winding6、叉花纠结式线圈sandwich-interleaved winding7、厂用变压器(发电厂用变压器) station service transformer8、插入电容式线圈capacitor shield winding9、充满油的密封系统sealed, completed filled system10、串级(电磁)式电流互感器cascade (inductive) current transformer11、串级(电磁)式电压互感器cascade (inductive) voltage transformer12、串级试验变压器cascade transformer13、串联电抗器series reactor14、串联绕组series winding15、船用变压器marine transformer16、触头组set of contacts17、储油柜oil conservator18、储油柜系统conservator system19、磁分路magnetic shunt20、磁箱式电流互感器porcelain-case type current transformer21、磁性调压器magnetic control voltage regulator22、粗调选择器coarse change-over selector1、带气垫的密封式油箱系统sealed-tank system with gas cushion2、带散热管的油箱tank with bend pipe3、单铁心式电流互感器single-core type current transformer4、单相单柱旁轭式铁心single-phase three-limb core5、单相二柱式铁心single-phase two-limb core6、倒立式电流互感器inverter-type current transformer7、电磁单元(电容式电压互感器) electromagnetic unit (of a capacitor voltage transformer)8、电动机构motor-drive mechanism9、电动机构的手动操作manual operation of motor-device mechanism10、电化学用整流变压器electro-chemistry rectifier transformer11、点火变压器ignition transformer12、电弧炉变压器arc furnace transformer13、电抗电压reactance voltage14、电抗器reactor15、电缆式电流互感器cable type current transformer16、电力变压器power transformer17、电铃变压器bell transformer18、电流互感器current transformer19、电流扩大值(测量用电流互感器的)extended rating current(of a measuring current transformer )20、电流误差current error21、电炉变压器furnace transformer22、电容分压器(电容式电压互感器)capacitor voltage divider (of a capacitor voltage transformer)23、电容分压器的分压比voltage ratio of a capacitor divider24、电容式电压互感器capacitor voltage transformer25、电压互感器voltage transformer26、电压降或电压升(指定负载下的)voltage drop or rise fora specified load condition27、电压调整率(指定复式下的)voltage regulation for a specified load condition28、电压误差voltage error29、电阻电压resistance voltage30、电阻炉变压器resistance furnace transformer31、电阻式温度计resistance-type thermometer32、叠积式铁心laminated core33、低压端子(电容式电压互感器的)low voltage terminal (ofa capacitor voltage transformer)34、低压绕组low-voltage winding35、端(部电容)环end ring36、短路匝short-circuited turn37、短路阻抗(一对绕组的)short-circuit impedance (of a pair of winding)38、端(部电容)屏end screen39、对应端子corresponding terminals40、独立绕组变压器separate winding transformer41、多框式铁心multi frame type core42、多绕组变压器multi-winding transformer43、多铁心式电流互感器multi-core type current transformer44、惰性气体压力系统inert gas pressure systemE1、额定参数rated quantities2、额定电流(变压器或并联电抗器绕组上的)rated current(ofa winding of a transformer or shunt reactor)3、额定电流比(电流互感器的)rated transformer ratio (of a current transformer)4、额定电压比(电流互感器的)rated transformer ratio (of a voltage transformer)5、额定电压比(绕组的)rated voltage ratio (of a winding)6、额定电压比(电压互感器的)rated transformation ratio (ofa voltage transformer)7、额定电压系数rated voltage factor8、额定动稳定电流rated dynamic current9、额定短时电流rated short-time current10、额定短时热电流(电流互感器的)rated short-timethermal current (of a current transformer)11、额定二次电流(电流互感器的)rated secondary current (of a current transformer)12、额定二次电压(电压互感器的)rated secondary voltage (of a voltage transformer)13、额定阀侧电流rated current on valve side14、额定阀侧电压rated current on line side15、额定阀侧视在功率rated apparent power on valve side16、额定负荷rated burden17、额定级电压rated through-current18、额定绝缘水平rated insulation level19、额定连续电流rated continuous current20、额定连续热电流(电流互感器)rated continuous thermal current (of a current transformer)21、额定频率rated frequency22、额定容量rated power23、额定输出(互感器的)rated output (of an instrument transformer)24、额定输出电压rated output voltage25、额定输入电压input voltage26、额定通过电流rated through current27、额定网侧电流rated current on line side28、额定网侧电压rated voltage on line side29、额定网侧视在功率rated apparent power on valve line30、额定仪表限值一次电流(电流互感器的)rated instrument limit primary current31、额定一次电流(电流互感器的)rated primary current (of a current transformer)32、额定一次电压(电压互感器的)rated primary voltage (of a voltage transformer)33、额定值rating34、额定准确限值一次电流(保护用电流互感器的)rated instrument limit primary current35、二次电流secondary current36、二次电路secondary circuit37、二次电压secondary voltage38、二次极限感应电势secondary limiting e.m.f39、二次绕组(变压器的)secondary winding (of a current transformer)40、二次绕组(电压互感器的)secondary winding (of a voltage transformer)II(防止点击)变压器class II transformerF1、阀侧绕组valve side winding2、发电厂自用变压器(简称:厂用变压器) station service transformer3、发电机变压器generator transformer4、放电线圈discharge coil5、反角环angle ring (cap-ring)6、非包封线圈干式变压器non-encapsulated-winding dry-type transformer7、非包封线圈干式电抗器non-encapsulated-winding dry-type reactor8、非封闭干式变压器non-enclosed dry transformer9、非耐短路变压器non-short-circuit proof transformer10、封闭干式变压器enclosed dry transformer11、风冷(AF)force-air cooling12、分接tapping (tap)13、分接参数tapping quantities14、分接变换操作tap-change operation15、分接变换指示器tap-change in progress indicator16、分接电压比(一对绕组的)tapping voltage ratio (of a pair of windings)17、分接范围tapping range18、分接工况tapping duty19、分接级tapping step20、分接位置指示器tap position indicator21、分接选择器tap-selector22、分接因数tapping factor23、分裂式变压器dual-low-voltage transformer24、分相封闭母线isolated phase bus25、负分接minus tapping26、负荷(互感器的)burden (of an instrument transformer)27、复合误差(电流互感器的)composite error (of a current transformer)28、附加绝缘supplementary insulation29、附加绕组auxiliary winding30、附加损耗supplementary load loss31、复绕式电流互感器compound-wound current transformer32、负载损耗load lossG1、干式变压器dry-type transformer2、干式电抗器dry-type transformer3、感应调压器induction-voltage regulator4、感应自动调压器automatic induction-voltage regulator5、高压电容器(电容式电压互感器的)high voltage capacitor (of a capacitor voltage transformer)6、高压端子(电容式电压互感器的)high voltage terminal (ofa capacitor voltage transformer)7、高压绕组high-voltage winding8、隔爆变压器flame-proof transformer9、隔离变压器isolating transformer10、隔膜式油保护系统diaphragm-type oil preservation system11、公共绕组common winding12、工频感应炉变压器power frequency induction furnace transformer13、共箱隔相封闭母线segregated phase bus14、工作分接位置数number of service tapping positions15、拐点电压knee point voltage16、贯穿式电流互感器through-type current transformer17、管式散热器pipe-type radiator18、滚动接触电刷rolling type current collector19、过电流闭锁装置over current blocking device20、过渡触头transition contacts21、过渡阻抗transition impedance22、固有分接位置数number of service tapping positionsH1、恒磁通调压constant flux voltage variation(CFVV)2、虹吸净油器(净油器)oil(siphon)filter3、滑动接触电刷sliding type current collector4、互感器instrument transformer5、恢复电压recovery voltage6、户内式indoor type7、混合调压combined voltage variation8、户外式outdoor typeJ1、降低容量的分接reduced-power tapping2、降压变压器step-down transformer3、夹件clamps4、交叠式线圈sandwich winding5、角环angle ring6、加强绝缘reinforced insulation7、基本绝缘basic insulation8、接触调压器variable transformer9、接触自动调压器automatic variable regulator10、接地变压器earthing transformer(neutral coupler)11、接地电压互感器earthed voltage transformer12、介质损耗因数dielectric dissipation factor13、静电环electrostatic ring14、静电屏electrostatic shielding15、净油器oil(siphon) filter16、紧急脱扣装置emergency tripping device17、纠结-连续式线圈inter leaved and continuous winding18、纠结式线圈inter leaved winding19、极限开关limit switch20、机械端位止动装置mechanical end stop21、极性选择器reversing change-over selector22、局部放电partial discharge23、绝缘热稳定性(电流互感器的)dielectric thermal stability(of a current transformer) K1、开断电流switched current2、开口三角形联结open delta connection3、开路绕组open winding4、开路中间电压(电容式电压互感器的)open-circuit intermediate voltage(of a capacitorvoltage transformer)5、壳式变压器shell-type transformer6、矿热炉变压器ore furnace transformer7、矿用变压器mining transformer(general type)8、矿用隔爆移动变电站mining flame proof movable substation9、空心电抗器reactor with air core10、空载电流no-load current11、空载损耗no-load loss12、控制用变压器control transformer13、扩大额定值的电流互感器extend rating type current transformerL1、累加用电力互感器summation current transformer2、冷却器cooler3、联结组标号connection symbol4、联络变压器system-interconnection transformer5、连续式线圈continuous winding6、励磁电流(电流互感器的)exciting current (of a current transformer)7、励磁绕组energizing winding8、零序电流互感器(剩余电流互感器)residual current transformer9、零序电压互感器(剩余电压互感器)residual voltage transformer10、零序阻抗zero-sequence impedance11、例行试验routine test12、滤波电抗器tuning(filter)reactor13、螺旋式线圈helical windingM1、满容量分接full-power of a winding2、密封式变压器sealed transformer3、密封式电抗器sealed reactor4、母线式电流互感器bus-type current transformerN1、耐短路变压器short-circuit proof transformer2、内部负荷(电流互感器的)internal burden(of a current transformer)3、内屏蔽式线圈capacitor shield windingO1、耦合绕组coupling windingP1、旁轭magnetic return path2、配电变压器distribution transformer3、膨胀器expander4、片式散热器panel-type radiator5、平波电抗器smoothing reactor6、平衡电抗器interphase reactor7、平衡绕组balancing winding8、平面式邮箱plane type tank9、匹配用电流互感器current matching transformer10、匹配用电压互感器voltage matching transformer11、P 级performance Class AQ1、强迫油循环导向冷却forced-directed oil cooling2、强迫油循环风冷(OFAF)forced-oil and forced-air cooling3、强迫油循环水冷(OFWF)forced-oil and water cooling4、钳式电流互感器split core type current transformer5、牵引变压器traction transformer6、牵引整流变压器traction rectifier transformer7、起动电抗器starting reactor8、起动自耦变压器starting auto-transformer9、切换开关diverter switch10、器身active part11、气体继电器gas relay;buchholz relay12、全封闭干式变压器totally enclosed dry-type transformer13、全绝缘电流互感器fully insulated current transformer14、全自保护变压器completely self-protected distribution transformer15、驱动机构driving mechanism16、曲折形联结zigzag connectionR1、绕线式电流互感器wound primary type current transformer2、绕组winding3、绕组的分接电流tapping power of a winding4、绕组的分接电压tapping voltage of a winding5、绕组的分接容量tapping power of a winding6、绕组的分级绝缘non-uniform insulation of a winding7、绕组的全绝缘uniform insulation of a winding8、绕组联结图connection diagram of windings.S1、三角形联结delta connection2、Ⅲ类(防止电击)变压器class Ⅲtransformer3、Ⅲ类照明设备用变压器transformer for class Ⅲluminaires4、散热器radiator5、三相三柱旁轭式铁心three-phase three-limb core6、三相三柱式铁心three-phase three-limb core7、三相中性点电抗器three-phase neutral reactor8、设备最高电压Um highest voltage for equipment Um9、声功率级(Lw) sound power level10、升压变压器step-up transformer11、声压级(Lp) sound pressure level12、剩余电流residual current13、剩余电流互感器residual current transformer14、剩余电压residual voltage15、剩余电压互感器residual voltage transformer16、剩余电压绕组residual voltage winding17、实际电流比(电流互感器的)actual transformation ratio (of a current transformer)18、实际电压比(电压互感器的)actual transformation ratio(of a voltage transformer)19、试验变压器testing transformer20、双重绝缘double insulation21、双功能电压互感器dual purpose voltage transformer22、双绕组变压器two-winding transformer23、输出电压范围output voltage range24、输入电压范围input voltage range25、树脂浇注式电流互感器cast-resin type current transformer26、树脂浇注式电压互感器cast resin type voltage transformer27、速饱和电流互感器rapid-saturable current transformer28、损耗比loss ratio29、损耗变动量power loss variationT1、套管bushing2、套管式电流互感器bushing type current transformer3、特殊试验special test4、调谐电抗器tuning(filter)reactor5、调压器voltage regulator6、铁轭yoke7、铁心core8、铁心接地端子earthed terminal for core9、铁心柱core limb10、通断触头main switch contacts11、桶式邮箱barrel type tank12、同心式线圈concentric windingW1、网侧绕组line side winding2、玩具用变压器transformer for toys3、稳定绕组stabilizing winding4、温升temperature rise5、稳压精度accuracy of a voltage stabilizing6、误差补偿error compensation7、无励磁分接开关off-circuit tap-changer8、无励磁调压变压器off-circuit-tap-changing transformer9、无危害式变压器(保安式变压器)fail-safe transformerX1、线段section2、相绕组phase winding3、箱式变电站integral unit4、相位差phase displacement5、相位移(变压器的)phase displacement(for a transformer)6、限流电抗器current-limiting reactor7、线路端子line terminal8、线圈coil9、线匝turn10、消弧电抗器arc-suppression reactor11、消弧线圈arc-suppression reactor12、消弧电抗器(消弧线圈)的额定电流rated current of an arc suppression reactor13、型式试验type test14、星形联结star connection15、信号温度计pressure-type thermometer16、心式变压器core-type transformer17、吸湿器radiator18、吸收比dielectric absorption ratio19、选择开关selector switch20、循环电流switched currentY1、压力释放装置pressure relief device2、压力式温度计pressure-type thermometer3、盐浴炉变压器salt bath furnace transformer4、仪表保安系数(FS)instrument security factor5、一次电流primary current6、一次电压primary voltage7、一次绕组(变压器的)primary winding(of a voltage transformer)8、一次绕组(电流互感器的)primary winding (of a current transformer)9、一次绕组(电压互感器的)primary winding(of a voltage transformer)10、I 类(防止电击)变压器class I transformer11、移圈调压器moving-coil voltage regulator12、油保护系统oil preservation system13、油流继电器oil-flow relay14、油浸式变压器oil-immersed type transformer15、油浸式电抗器oil-immersed type reactor16、油位计oil level indicator17、有载分接开关on-load tap-changer18、有载调压变压器on-load-tap-changing transformer19、油中溶解气体分析dissolved gas(in oil)analysisZ1、(线)匝turn2、再起动装置restarting device3、增压变压器booster transformer4、正分接plus tapping5、整流变压器rectifier transformer6、直流互感器direct current instrument transformer7、支柱式电流互感器support type current transformer8、中间式电流互感器current matching transformer9、中频变压器intermediate-frequency transformer10、中性点端子neutral terminal11、中性点接地电抗器neutral-earthing reactor12、中性点耦合器(中性点耦合器)earthing transformer (neutral coupler)13、中压电容器(电容式电压互感器的)intermediate voltage capacitor(of a capacitor voltage transformer)14、电压端子(电容式电压互感器的)intermediate voltage terminal(of a capacitor voltage transformer)15、中压绕组intermediate-voltage winding16、钟罩式油箱bell type tank17、转换选择器change-over selector18、主触头main contacts19、主分接(额定分接)principal tapping20、逐级控制step-by-step control21、准确级accuracy class22、准确限值系数(保护用电流互感器的)accuracy limit factor (of a protective current transformer)23、主(电容)屏main capacitor plate24、柱上式pole-type25、自动调压器automatic voltage regulator26、自动调压速度response speed27、自冷(AN) natural air cooling; self-cooling28、自耦变压器auto-transformer29、自耦复绕式电流互感器auto-compound current transformer30、自耦式互感器instrument auto-transformer31、总损耗total loss32、组合式变电站integral unit substation33、组合式互感器combined transformer34、最大额定级电压maximum rated step voltage35、最大额定通过电流maximum rated through-current36、阻抗电压(对于主分接)impedance voltage at rated current(for the principal tapping)37、阻尼电抗器damping reactor。

变压器励磁涌流计算

变压器励磁涌流计算

变压器励磁涌流计算英文回答:Transformer magnetizing inrush current refers to the transient current that flows through the transformer windings during the initial energization of the transformer. This current is caused by the sudden change in the magnetic flux within the transformer core and can be quite high, typically several times the rated current of the transformer. The magnetizing inrush current is a temporary phenomenon and decays quickly as the magnetic flux stabilizes.The calculation of transformer magnetizing inrushcurrent involves considering the transformer's characteristics and the system parameters. One important factor is the transformer's magnetizing impedance, which is typically provided by the manufacturer. This impedance represents the opposition to the flow of magnetizingcurrent and is usually expressed as a percentage of thetransformer's rated voltage. By knowing the rated voltage and the magnetizing impedance, we can calculate the equivalent magnetizing reactance.Another important parameter is the system voltage atthe time of energization. The magnetizing inrush current is influenced by the system voltage and the magnetizing reactance. Therefore, by knowing these two parameters, we can calculate the magnetizing inrush current using Ohm's law, where the current is equal to the voltage divided by the reactance.Let's consider an example to illustrate the calculation. Suppose we have a transformer with a rated voltage of 10 kV and a magnetizing impedance of 5%. If the system voltage at the time of energization is 10 kV, we can calculate the magnetizing reactance as follows:Magnetizing reactance = (Magnetizing impedance / 100) Rated voltage.= (5 / 100) 10 kV.= 0.5 kΩ。

变压器专业词汇英文翻译

变压器专业词汇英文翻译

变压器常用术语TECHNICAL TERMS COMMONLYUSED FOR TRANSFORMERPART 1 产品名称及类型1.1 电力变压器Power transformer1.2 芯式变压器core type transformer 内铁式变压器core-form transformer1.3 壳式变压器shell-form transformer 外铁式变压器shell-form transformer1.4 密封式变压器sealed transformer1.5 有载调压电力变压器power transformer with OLTC1.6 无载调压电力变压器power transformer with off-circuit tap-changer 1.28 油浸式变压器oil-immersed type transformer1.29 浸难燃油变压器noninflammable medium impregnated transformer1.30 干式变压器dry type transformer1.31 树脂浇注式变压器resin-casting type transformer1.32 H 级绝缘变压器transformer with H class insulation1.33 气体绝缘变压器gas insulated transformer1.34 电炉变压器furnace transformer1.35 整流变压器rectifier transformer1.36 列车牵引变压器traction transformer, locomotive transformer1.7 配电变压器1.8 自耦变压器distribution transformer auto-transformer1.9 联络变压器interconnecting transformer 1.10 升压变压器step-up transformer1.11 降压变压器step-down transformer1.12 增压变压器booster transformer 串联变压器1.13 发电机变压器generator transformer1.14 电站用变压器substation transformer 1.15 交流变压器converter transformer1.16 分裂变压器split-winding type 1.37 矿用变压器mining transformer 1.38 防爆变压器explosion-proof transformer flame-proof transformer 1.39 隔离变压器isolation transformertransformer1.17 厂用变压器power plant transformer 1.18 所用变压器electric substation 1.40 试验变压器testing transformer 1.41 串级式试验变压器cascade testing transformer串联变压器增压变压器灯丝变压器电焊变压器钎焊变压器船用变压器起动自1.421.431.441.451.46transformer1.19 单相变压器1.20 三相变压器1.21 多相变压器single-phase transformerthree-phase transformerpolyphase transformer1.471.48autotransformer起动变压器移动变压器1.491.501.22 单相变压器组成的三相组three-phase banks with separate single-phase transformer 1.51 1.52 1.531.23 三相接地变压器transformerthree-phase earthing1.24 三线圈变压器transformer1.25 两线圈变压器transformer1.26 双线圈变压器transformer1.27 多线圈变压器transformerthree-windingtwo-windingdouble-windingmulti-windingseries transformerbooster transformerfilament transformerwelding transformer brazingtransformer marinetransformer 耦变压器startingstarting transformermovable substation移动式movable type 成套变电站complete substation 全自动保护单相变压器completeself-protected single-phase transformer(CSP)1.54 互感器instrument transformer1.55 测量用互感器measurementcurrent/voltage TR1.56 保护用互感器protectivecurrent/voltage transformer1.57 电流互感器current transformer (CT )1.58 电压互感器voltage transformerpotential transformer(PT)1.59 全绝缘电流互感器fully insulatedcurrent transformer1.60 母线式电流互感器bus-type current transformer1.61 绕线式电流互感器wound primary type current transformer1.62 瓷箱式电流互感器porcelain type current transformer1.63 套管用电流互感器bushing-type current transformer1.64 电容式电流互感器capacitor typecurrent transformer1.65 支持式电流互感器support-type current transformer1.66 倒立式电流互感器reverse type current transformer1.67 塑料浇注式电流互感器cast resin current transformer1.68 钳式电流互感器split-core type current transformer1.69 速饱和电流互感器rapid-saturable current transformer1.70 串级式电流互感器cascade-type current transformer1.71 剩余电流互感器residual current transformer1.72 电容式电压互感器capacitor type voltage transformer1.73 接地电压互感器earthed voltage transformer1.74 不接地电压互感器unearthed voltage transformer1.75 组合式互感器combined instrument transformer1.76 剩余电压互感器residual voltage transformer1.77 移圈调压器moving-coil voltage transformer1.78 动线圈moving winding1.79 自耦调压器autoformer regulator1.80 接触调压器variac1.81 感应调压器induction voltage regulator 1.82 磁饱和调压器magnetic saturationvoltage regulator1.83 电抗器reactor1.84 并联电抗器shunt reactor1.85 串联电抗器series reactor iron core reactor air core reactor concrete(cement) reactor 1.90 三相中性点接地电抗器three-phase neutral reactor1.92 单相中性点接地电抗器single-phase neutral earthing reactor1.93 起动电抗器starting reactor1.94 平衡电抗器smoothing /interphase reactor1.95 调幅电抗器modulation reactor1.96 消弧电抗器arc-suppression reactor1.97 消弧线圈arc-suppression coil1.98 阻波器,阻波线圈wave trap coil1.99 镇流器ballast1.100 密闭式sealed type1.101 包封式enclosed type1.102 户外式outdoor type1.103 户内式indoor type1.104 柱上式pole mounting type1.105 移动式movable type1.106 列车式trailer mounted type1.107 自冷natural cooling (ONAN)1.108 风冷forced-air cooling (ONAF)1.109 强油风冷forced-oil forced-air cooling(ONAF)1.110 强油水冷forced-oil forced-water cooling (ONWF)1.111 强油导向冷却forced-directed oil cooling (OFAN)1.112 强油导向风冷却forced-directed forced-air oil cooling(ODAF)1.113 恒磁通调压constant flux voltage variation(CFVV)1.114 变磁通调压variable flux voltage variation(VFVV)1.115 混合调压combined voltage variation(CbVV)PART2 基础词汇1.86 饱和电抗器1.87 铁心电抗器1.88 空心电抗器1.89 水泥电抗器saturable reactor2.1 千瓦kilowatt(kw) 2.2 兆瓦megawatt(MW) 2.3 京瓦gigawatt(GW) 2.4 千伏kilovolt(kV)symbol of product type of productrated voltage rated power rated current连 接 组 标 号connectionsymbol,impedance voltage rated frequency no-load losseddy-current loss hysteresis loss no-load current exciting current load loss 损 耗 additional losses,杂散损耗 stray losses 总损耗total losses 损耗比 loss ratio 冷却方式type of cooling 介质损耗 dielectric loss 介损角正切值 loss tangent 电压组合 voltage combination 电抗电压 reactance voltage 额定电压比 rated voltage ratio 电阻电压 resistance voltage 电压调整率 voltage regulation 相位差 phase displacement 相位差 zero-sequence impedance short-circuit impedance flux density current density 安匝数 number of ampere-turns轴向漏磁通 axial leakage flux 2.47 径向漏磁通 radial leakage flux2.48 循环电流 circulating current 2.49 热点 hot spot2.50 最热点 hottest spot 2.51 局部过热 local overheat 2.52 有功输出 active output 2.53 满容量分接 fully-power tapping 2.54 额定级电压 rated step voltage 2.55 最大额定电压 maximum rated voltage 2.56最 大 额 定 电 流 maximum ratedthrough-current2.57 绕 组 额 定 电 压 rated voltage of a winding2.58 额定短时电流 rated short time current 2.59 额定短时热电流 rated short thermal current2.60 额 定 连 续 热 电 流 rated continuous current2.61 额定动稳定电流 rated dynamic current 2.62 一次电流 /电压 primary current/voltage 2.63二 次 电 流 / 电 压 secondarycurrent/voltage2.64 实际电流比 actual transformation ratio of a current transformer2.65 实际电压比 actual transformation ratio of a voltage transformer2.66 二 次 极 限 感 应 电 动 势 secondary limiting e.m.f.2.67 互感器的二次回顾路 secondary circuit of CT and PT 2.68 定额 rating2.69 铁心噪声 noise of core 2.70 背境噪声 background noise 2.71 噪声水平 noise level 2.72 声级 sound level2.73 声功率级 sound power level 2.74 声级试验 sound level test2.75 声级测量 sound level measurement 2.76 水平加速度 horizontal acceleration 2.77 垂直加速度 vertical acceleration 2.78 地震 seism, earthquake 2.79 地震烈度 earthquake intensity 2.80 工频 power-frequency 2.81 中频 medium frequency 2.82 高频 high frequency2.5 2.6 千伏安 KVA 兆伏安 MVA 京伏安 GVA千乏 kilovar(kV Ar)兆乏megavar(MV Ar)京乏 gigavar(GV Ar)2.12 2.13 2.14 2.15 2.16 2.17 产品代号产品型号额定电压 额定容量 额定电流 2.18 symbol of connection 2.19 2.20 2.21 2.22 2.23 2.24 2.25 2.26 阻抗电压 额定频率空载损耗 涡流损耗 磁滞损耗 空载电流 激磁电流负载损耗 附加 2.27 supplementary load loss 2.28 2.292.30 2.31 2.32 2.33 2.34 2.35 2.36 2.372.38 2.39 2.41 2.42 2.432.44 2.452.46校 验 phase displacement 2.40 verification零序阻抗 短路阻抗 磁通密度 电流密度2.7 2.8 2.9 2.10 2.11 兆伏 megavolt(MV)京电子伏 giga-electron-volt(GEV)natural frequency of vibrationfrequency response harmonicsmeasurement 2.88 绝缘水平insulation level2.89 绝缘强度insulation strength, dielectric strength2.90 主绝缘main insulation2.91 纵绝缘longitudinal insulation2.92 内绝缘internal insulation2.93 外绝缘external insulation2.94 绝缘配合insulation co-ordination2.95 全绝缘uniform insulation2.96 半绝缘non-uniform insulation2.97 降纸绝缘reduced insulation2.98 中心点neutral point2.99 中心点端子neutral terminal2.100 正常绝缘normal insulation2.101 介电常数dielectric constant2.102 油纸绝缘系统oil-paper insulation system2.103 绝缘电阻insulation resistance2.104 绝缘电阻吸收比absorption ratio of insulation resistance2.105 绝缘击穿insulation breakdown2.106 碳化carbonization2.107 爬电距离creepage distance2.108 沿面放电creeping discharge2.109 放电discharge2.110 局部放电partial discharge2.111 局部放电测量measurement of partial discharge2.112 超声定位ultrasonic location, ultrasonic orientation2.113 破坏性放电disruptive discharge2.114 局部放电起始电压partial discharge inception voltage2.115 局部放电终止电压partial discharge extinction voltage2.116 过电压overvoltage short time overvoltage transient overvoltage switchingovervoltage atmosphericovervoltage2.121 额定耐受电压rated withstand voltage2.122 工频耐受电压power-frequency withstand voltage2.123 感应耐压试验induced overvoltage withstand test2.124 温升试验temperature-rise test2.125 温升temperature rise2.126 突发短路试验short-circuit test2.127 动热稳定thermo-dynamic stability2.128 冲击耐压试验impulse voltage withstand test2.129 雷电冲击耐受电压lightning impulsewithstand voltage2.130 操作冲击耐受电压switching impulsewithstand voltage2.131 雷电冲击lightning impulse2.132 全波雷电冲击full wave lightning impulse2.133 截波雷电冲击chopped wave lightning impulse2.134 操作冲击switching impulse2.135 操作冲击波switch surge, switch impulse2.136 伏秒特性voltage-time characteristics 2.137 截断时间time to chopping2.138 波前时间time to crest2.139 视在波前时间virtual front time2.140 半峰值时间time to half value crest2.141 峰值peak value, crest value2.142 有效值root-mean-square value2.143 标么值per unit value2.144 标称值nominal value2.145 电级electrode2.146 电位梯度potential gradient2.147 等电位,等位equipotential2.148 屏蔽shielding2.149 静电屏蔽electrostatic shielding2.150 磁屏蔽magnetic shielding2.151 静电屏electrostatic screen2.152 静电板electrostatic plate2.153 静电环electrostatic ring2.154 电磁感应electro-magnetic induction 2.155 电磁单元electro-magnetic unit2.83 振荡频率2.84 谐振频率2.85 自振频率2.86 频率响应2.87 谐波测量oscillating frequency resonance frequency2.117 短时过电压2.118 瞬时过电压2.119 操作过电压2.120 大气过电压2.156 有效面effective surface2.157 标准大气条件standard atmosphericcondition2.158 视在电荷apparent charge2.159 体积电阻volume resistance2.160 导电率admittance2.161 电导conductance, conductivity2.162 电晕放电corona discharge2.163 闪络flashover2.164 避雷器surge arrestor2.165 避雷器的残压residual voltage of an arrestor2.166 绝缘材料耐温等级temperature class of insulation2.167 互感器额定负荷rated burden of an instrument transformer2.168 准确级次accuracy class2.169 真值true value2.170 允差tolerance2.171 比值误差校验ratio error verification 2.172 电流误差current error2.173 电压误差voltage error2.174 互感器相角差phase displacement of instrument transformer2.175 复合误差composite error2.176 瞬时特性transient characteristic2.177 瞬时误差transient error2.178 额定仪表保安电流rated instrument security current2.179 二次极限感应电势secondary limitinge.m.f2.180 保安因子security factor2.181 额定准确限值的一次电流rated accuracy limit primary current2.182 误差补偿error compensation2.183 额定电压因子rated voltage factor2.184 准确限值因子accuracy limit factor2.185 开断电流switched current2.186 笛卡尔坐标,直角坐标Cartesian coordinate2.187 极坐标polar coordinate2.188 横坐标abscissa2.189 纵坐标ordinate 2.190 X- 轴X-axis2.191 复数complex number2.192 实数部分real component2.193 虚数部分imaginary component2.194 正数positive number2.195 负数negative number2.196 小数decimal2.197 四舍五入round off2.198 分数fraction2.199 分子numerator2.200 分母denominator2.201 假分数improper fraction2.202 钝角obtuse angle2.203 锐角acute angle2.204 补角supplementary angle2.205 余角complement angle2.206 平行parallel2.207 垂直perpendicular2.208 乘方involution2.209 开方evolution, extraction of root2.210 n 的 5 次方5th power of n2.211 幂exponent, exponential2.212 微分,差动differential, differentiate 2.213 积分,集成integral, integrate2.214 成正比proportio nal to2.215 成反比inversely proportional to2.216 概率probability2.217 归纳法inductive method2.218 外推法extrapolation method2.219 插入法interpolation method2.220 最大似然法maximum likelihood method2.221 图解法graphic method2.222 有限元法finite element method2.223 模拟法simulation method2.224 方波回应step response2.225 迭加电荷superimposed charge2.226 杂散电容stray capacitance2.227 无损探伤non-distractive flaw detection2.228 红外线扫描infrared scanning2.229 计算机辅助设计computer aided design(CAD)2.230 计算机辅助制造computer aided manufacturing(CAM)2.231 计算机辅助试验computer aidedtest(CAT)2.233 近似于approximate( approx)minute(rpm)2.235 速度velocity2.236 加速度acceleration2.237 重力加速度gravitational acceleration 2.238 引力traction2.240 件数pieces2.242 缩写abbreviation2.243 以下简称为hereinafter referred as xxx2.244 常用单位units commonly used2.245 包括缩写including abbreviations2.246 分米decimeter 厘米centimeter2.247 海里knot2.248 码yard2.249 磅pound(1b) 磅/平方英寸pound per square inch(ppsi)2.251 英制热量单位British thermal unit (BTU) 2.252 马力horsepower2.253 压强intensity of pressure2.254 帕斯卡Pascal(Pa)2.255 千帕kpa 兆帕Mpa2.256 粘度viscosity2.257 帕斯卡秒pascal.second2.258 泊poise 厘泊centipoises2.259 焦耳joule(J) 千瓦时kilowatt-hour(kwh)2.260 特斯拉tesla(T) 高斯gaue(Gs)2.261 奥斯特oersted(0e) 库仑coulomb(C) 2.262 微微库Pico-coulomb(PC)2.263 达因dyne2.264 摄氏度Celsius, centigrade( C)2.265 开尔文Kelvin 法拉farad(F)2.266 皮可法拉pico-farad(pF)2.268 立方分米cubic decimeter立方厘米cubic centimeter2.269 桶barrel 石油petroleum2.270 标准国际单位制standard international unit2.271 厘米-克秒单位制CGS unit 2.272 环境设备ambience apparatus2.273 校验calibration2.274 兼容性compatibility2.275 扩散系数diffusion coefficient2.276 故障fault2.277 公顷hectarePART3 典型产品结构3.1 芯式,内铁式core type3.2 壳式,外铁式shell type3.3 铁心core3.4 磁路magnetic circuit3.5 线圈winding, coil3.6 高压线圈HV winding3.7 中压线圈MV winding3.8 低压线圈LV winding3.9 调压线圈tapped winding, regulating winding3.10 高压引线high-voltage leads3.11 中压引线mid-voltage leads3.12 低压引线low-voltage leads3.13 夹件clamping frame3.14 上部夹件upper clamping3.15 下部夹件lower clamping3.16 线圈压紧螺栓winding compressing bolt 3.17 线圈压紧装置winding compressing device3.18 线圈端部绝缘end insulation of winding3.19 器身定位装置positioning device for active-part3.20 定位装置fixing device3.21 铁心垫脚foot-plate of core3.22 垫脚foot-pad3.23 分接引线tapping leads, tap leads3.24 引线支架supporting frame for leads3.25 无励磁分接开关non-excitation tap-changer3.26 无载分接开关off-circuit tap-changer3.27 分接选择器tap selector3.28 有载分接开关on-loadtap-changer(OLTC) on-circuit tap-changer3.29 切换开关diverter switch3.30 选择开关selector switch3.31 转换选择器change-over selector2.234 每分钟转数revolution per3.32 粗选择器coarse tap selector3.33 触头组set of contacts3.34 过度触头transition contacts3.35 过度阻抗transition impedance3.36 有载开关操纵机构operating mechanism of OLTC3.37 驱动机构driving mechanism3.38 电动机构motor drive3.39 垂直转动轴vertical driving shaft 水平转动轴horizontal driving shaft3.40 伞尺轮盒bevel gear box3.41 防雨罩drip-proof cap3.42 联轴节coupling3.43 最大分接maximum tapping 最小分接minimum tapping3.44 额定分接rated tapping, principal tapping3.45 固定分接位置数number of inherent tapping positions 工作分接位置数number of service tapping positions3.46 主分接principal tap, main tap 正分接plus tapping 负分接minus tapping3.47 分接变换操作tap-changer operation tap position indicator tapping voltage of atapping current of atapping power of awinding3.52 分接范围tapping range3.53 分接量tapping quantities3.54 分接因子tapping factor3.55 分接工作能力tapping duty3.56 分接线tapping step3.57 分接线tapping connection3.58 分接引线tapping lead3.59 小车支架及滚轮bogie frame and wheel3.61 箱底tank bottom3.62 箱盖tank cover3.63 箱沿tank rim3.64 垫脚垫块supporting block for foot-pad 3.65 联管接头tube connector3.66 联接法兰connecting flange3.67 加强筋,加强板stiffener3.68 油箱垂直加强铁vertical stiffening channel of tank wall3.69 油箱活门oil sampling valve3.70 放油活门oil drainningvalve3.71 冷却器cooler3.72 集中安装concentrated installation 3.73 集中安装强油循环风冷器concentrated installation of forced-oil circulating air cooler3.74 冷却器进口inlet of cooler冷却器出口outlet of cooler3.75 潜油泵oil-submerged pump3.76 油流继电器oil flow relay3.77 净油器oil filter3.78 虹吸净油器oil siphon filter3.79 散热器radiator3.80 片式散热器panel type radiator3.81 管式散热器tubular radiator3.82 放油塞oil draining plug3.83 放气塞air exhausting plug3.84 蝶阀radiator valve butterfly valve3.85 风扇支架supporting frame for fan motors3.86 风扇及电机fan and motor3.87 风扇接线盒connecting box for fan motors3.88 储油柜conservator3.89 油位计oil-level indicator3.90 气体继电器gas relay, buchholz realy 3.91 皮托继电器pitot relay3.92 储油柜联管elbow joint for conservator 3.93 有载开关用储油柜conservator for OLTC3.94 有载开关用气体继电器gas relay for OLTC3.95 联管tube connector3.96 吸湿器dehydrating breather3.97 铭牌rating plate3.98 温度计thermometer3.98 指示仪表柜cabinet panel for indicating instruments3.99 风扇控制柜cabinet panel for fan motor control3.100 压力释放阀pressure-relief valve3.101 安全气道explosion-proof pope3.102 膨胀器expander3.103 主排气导管main gas-conduit3.104 分支导气管branching gas-conduit3.105 滤油界面tube connector for oil-filter 3.106 温度计座thermometer socket3.107 储油柜支架supporting frame for conservator3.108 高压套管HV bushing3.48 分接位置指示器3.49 线圈分接电压winding3.50 线圈分接电流winding3.51 线圈分接容量3.109 高压套管均压球equipotential shielding for HV bushing3.110 高压零相套管HV neutral bushing, HV bushing phase03.111 中压套管MV bushing3.112 中压零相套管MV neutral bushing,MV bushing phase03.113 低压套管LV bushing3.114 接地套管earthing bushing3.115 极性polarity3.116 极化polarization3.117 高压套管储油柜conservator for HV bushing3.118 相间隔板interphase insulating barrier 3.119 吊攀lifting lug3.120 安装轨道installation rail3.121 相序标志牌designation mark of phase sequence3.122 接地螺栓earthing bolt3.123 视察窗inspection hole3.124 手孔handhole3.125 人孔manhole3.126 MR 有载开关MR OLTC3.127 ABB 有载开关ABB OLTC3.128 伊林有载开关ELIN OLTC3.129 F& 套管F&G bushingPART4 铁心结构4.1 多框式铁心multi-frame type core4.2 三相三柱铁心three-phase three-limb core4.3 三相五柱铁心three-phase five-limb core4.4 卷铁心wound core4.5 冷轧晶粒取向硅钢片cold-rolled grain-oriented silicon sheet steel4.6 晶粒crystalline grain4.7 高导磁硅钢片HI-B silicon sheet steel 4.8 铁心片core lamination4.9 一迭铁心 a lamination stock4.10 铁心迭积图lamination drawing, lamination diagram4.11 迭片lamination4.12 迭片系数lamination factor4.13 空间利用系数space factor4.14 层间绝缘layer insulation 4.15 斜接缝mitring4.16 45°斜接缝45° mitred joint4.17 斜接缝的交错排列方式over-lay arrangement for mitred joints of lamination 4.18 重迭overlap4.19 铁心油通oil-duct of core4.20 铁心气道air ventilating duct of core4.21 阶梯接缝stepped lay joint4.22 对接铁心butt jointed core4.23 渐开线铁心evolute core, involute core 4.24 空气隙air gap4.25 铁心拉板tensile plate of core limb, core drawplate4.26 铁心柱core limb, core lge4.27 轭,铁轭yoke4.28 上轭upper yoke下轭lower yoke旁轭side yoke, return yoke4.29 环氧绑扎带epoxy-bonded bandage4.30 轭拉带yoke tensile belt4.31 铁轭拉带banded band of core yoke4.32 上轭顶梁top jointing beam of upper yoke 4.33 侧梁side beam4.34 夹件clamping frame4.35 铁心夹件core clamps, coreframe4.36 铁轭夹件yoke clamping, yoke clamps 4.37 上夹件upper yoke clamping, upper yoke clamps4.38 下夹件lower yoke clampings, lower yoke clamps4.39 夹件腹板web of yoke clamping4.40 夹件肢板limb of yoke clamping4.41 夹件加强stiffening plate of clamping4.42 压线圈的压钉winding compressing bolt4.43 压钉螺母nut for compressing bolt4.44 弹簧压钉compressing bolt with spring 4.45 油缸压钉compressing bolt with hydraulic damper4.46 线圈支撑架winding supporter4.47 线圈支撑架 winding supporting plate 4.48 垫脚 foot pad 4.49 定位孔 positioning hole4.50 带螺母的定位柱 positioning stud 4.51 拉螺杆 tensile rod5.15 部 分 纠 结 式 线 圈 partial-interleaved winding5.16 插花纠结式线圈 sandwich-interleaved winding5.17 内 屏 连 续 式 线 圈 4.52 夹件夹紧螺杆 yoke clamping bolt 4.53 铁心接地片 core earthing strip 4.54 铁心地屏 4.55 旁轭地屏 4.56 接地屏蔽 earthing screen of code earthing screen of side yoke earthing shield 4.57 铁心窗高 core window height 4.58 中心距 M center line distance M 4.59 铁心中间距 center distance between lombs 4.60 木垫块 4.61 迭片系数 4.62 铁心的级4.63 心 柱 外 接 圆 core leg 4.64 铁心端面 lamination 4.65 木棒 wood padding block laminationfactor stage of lamination stacks circumscribed circle of innershield-continuous winding5.18 插 入 电 容 式 线 圈 capacitor shield winding5.19 高 串 联 电 容 线 圈 high series capacitance winding5.20 双饼式线圈 twin-disk winding 5.21 交 错 式 线 圈 sandwich winding, staggered winding5.22 螺 旋 式 线 圈 helical winding, helix winding5.23 半螺旋式线圈 semi-helical winding4.66 定位板 PART5 线圈结构5.1 圆筒式线圈 5.2 层式线圈 5.3饼式线圈 core surface perpendicular to wood bar, wood rod positioning plate cylindrical winding5.24 单列 螺 旋式 线圈 single-row helicalwinding5.25 双列 螺旋式 线圈 double-row helicalwinding5.26 三列 螺旋式 线圈 three-row helical5.4 单层圆筒式线圈 winding 5.5 双层圆筒式线圈winding 5.6 多层圆筒式线圈 winding 5.7 大型层式 线圈 winding 5.8 分段圆筒式线圈 5.9 分段多层圆筒线圈layer winding disk winding single layer cylindricaldouble layer cylindrical multi-layer cylindrical large size long layer sectional layer winding sectional multi-layer winding5.27 短螺旋式线圈 short helical winding 5.28 螺旋式线 圈引 出端的 固定 terminal fixing for helical winding 5.29 分裂式线圈 split winding 5.30 分段式线圈 sectional winding 5.31 箔式线圈 foil winding5.32 全 绝 缘 线 圈 uniformly insulated winding5.33 分 级 绝 缘 线 圈 gradedly insulated winding, winding with non-uniform insulation 5.34 第三线圈 tertiary winding 5.35 高压线圈 high-voltage winding 5.36 中 压 线 圈 mid-voltage winding, intermediate voltage windingwinding5.10 连续式线圈 continuous winding 5.11 半 连 续 式 线 圈 semi-continuous 5.37 低压线圈 5.38 调压线圈 windinglow-voltage winding regulating winding,tappedwinding 5.12 纠结式线圈 interleaved winding 5.13 纠结饼式线圈 interleaved disc winding5.14 纠 结 — 连 续 式 线 圈 interleaved-continuous winding5.39 辅助线圈 5.40 平衡线圈 5.41 稳定线圈 5.42 公共线圈 5.43 串联线圈 5.44 连耦线圈 auxiliary winding balance winding stabilizing winding common winding series winding coupling winding5.45 励磁线圈 exciting winding, energizing winding5.46 一次线圈 primary winding 5.47 二次线圈 secondary winding 5.48 左绕 left-wound 5.49 右绕 right-wound 5.50 星形联结 star connection 5.51 三角形联结 delta connection 5.52 曲折形联结 zigzag connection 5.53 T 形联结 scott connection5.54 开口三角形联结 open-delta connection 5.55 开口线圈 open winding5.57 线段 winding disk, winding section 5.58 线层 winding layer 5.59 匝绝缘 turn insulation 5.60 层绝缘 layer insulation5.61 段 绝 缘 insulation between disks, section insulation5.62 端绝缘 end insulation 5.63 顶部端环 top support ring 5.64 分接头 tapping terminal 5.65 分接区 tapping zone5.66 段间横垫块 radial spacer between disks 5.67 燕尾垫块 chock 5.68 燕尾撑条 dovetail strip 5.69 垫块的厚度 spacer thickness 5.70 垫块的宽度 spacer width 5.71 撑条 stick, duct strip 5.72 轴向撑条 axial strip 5.73 油道 oil-duct, oil passage 5.74 径向油道 radial oil-duct 5.75 段间油道 oil-duct between disks 5.76 段 间 过 度 联 线 transfer connection between disks5.77 段间换位联线 transposed connection between disksS 弯 S-bend 线圈起始端 initial terminal of winding 线圈终端 轴向深度 径向深度 绝缘纸筒 匝间绝缘 绝缘角环5.86 线匝间垫条 insulating filling strips betweenturns 5.87 分数匝fractional turn 5.88 整数匝integer turn5.89 近似一圈 approximate roll5.90 并绕导线 parallel wound conductors 5.91 多股导线 multi-strand conductors 5.92 电磁线 electro-magnetic conductor 5.93 组合导线 composite conductor 5.94 换 位 导 线 transposed conductor, transposed cable5.95 纸包线 paper wrapped conductor 5.96 纸包导线 covered conductor 5.97 漆包线 enameled conductor 5.98 圆线 round wire5.99 硬 拉 铜 导 线 hard drawn copper conductor5.100 退火导线 annealed conductor 5.101 玻 璃 丝 包 线 glass-fiber covered conductor5.102 纸槽 paper channel 5.103 绑线 binding wire 5.104 绑绳 binding rope 5.105 静电板 electrostatic plate 5.106 静电环 electrostatic ring5.107 端部电容环 capacitive layer end ring 5.108 端 部 电 容 屏 capacitive layer end screen5.109 屏蔽环 shielding ring 5.110 屏蔽线 shielding conductor 5.111 屏蔽角环 shroud petal 5.112 绝缘包扎 insulation wrapping 5.113 线圈总高度 overall height of winding 5.114 铜线高度 copper height of winding 5.115 线圈调整 trimming of winding 5.116 线 圈 浸 漆 varnish impregnation of winding5.117 线圈的换位 transposition of winding 5.118 标准换位 standard transposition 5.119 分组换位 transposition by groups 5.120 线 圈 展 开 图 planiform drawing of winding5.121 线 圈 的 干 燥 与 压 缩 drying and compressing of winding5.122 绝 缘 的 压 缩 收 缩 率 shrinkage of5.78 5.79 5.80 final terminal of winding axial depth radial depth insulating cylinder turn insulation5.815.825.83 5.84insulating angled ring (collar5.85ring)insulation under compression5.123 无氧铜导线deoxygenized copper conductor5.124 铝合金导线aluminum-alloy conductorPART6 油箱结构及附件6.1 钟罩式油箱bell type tank6.2 上节油箱upper part of tank6.3 下节油箱bottom part of tank6.4 箱壁tank wall6.5 带磁屏箱壁tank wall with magnetic shield 6.6 箱底tank bottom6.7 箱盖tank cover6.8 箱沿tank rim6.9 箱沿护框pad frame for tank rim gasket 6.10 边缘垫片rim6.11 加强筋, 加强板stiffener6.12 联管头tube connecting flange6.13 放油活门draining valve6.14 油样活门oil sampling valve6.15 油样活塞oil sampling plug6.16 闸阀gate valve6.17 蝶阀butterfly valve6.18 球阀ball valve6.19 压力释放阀pressure relief valve6.20 安全气道explosion-proof pipe6.21 真空接头connecting flange for evacuation6.22 滤油接头connecting flange for oil filter 6.23 水银温度计pocket for mercury thermometer6.24 铭牌底板base plate of rating plate6.25 手孔handhole6.26 人孔manhole6.27 升高座ascending flanged base turret6.28 吊攀lifting lug6.29 千斤顶支座jacking lug6.30 定位钉positioning pin6.31 盖板cover plate 6.32 临时盖板temporary cover plate6.33 带隔膜储油柜conservator with rubber diaphragm6.34 带胶囊储油柜conservator with rubber bladder6.35 沉淀盒precipitation well6.36 导气管air exhausting pipe6.37 导油管oil conduit6.38 吊环lifting eyebolt6.39 有围栏的梯子ladder with balustrade6.40 适形油箱form-fit tank6.41 呼吸器breather6.42 气体继电器gas relay, buchholz relay6.43 皮托继电器pitot relay6.44 流动继电器flow relay6.45 风冷却器air cooler6.46 水冷却器water cooler6.47 冷却器托架bracket for cooler6.48 冷却器拉杆tensile rod for cooler6.49 潜油泵oil-submerged pump6.50 流量flow quantity6.51 扬程lift6.52 控制箱control box6.53 控制盘control panel6.54 端子箱terminal box6.55 端子排terminal block6.56 风扇接线盒connecting box for fan-motors6.57 金属软管metallic hose6.58 封闭母线联结法兰joint flange for enclosed bus-bar6.59 管式油位指示器tubular oil-level indicator6.60 磁铁式油位指示器magnetic type oil-level indicatorPART7 铁心制造7.1 产品制造manufacturing of products7.2 硅钢片纵剪silicon steel sheet slitting7.3 硅钢片横剪silicon steel sheet cutting tolength7.4 多刀滚剪机multi-disk-cutter slitting machine7.5 纵剪slitting横剪cut-to-length7.6 纵剪生产线slitting line7.7 横剪生产线cut-to-length line7.8 开卷机decoiler7.9 毛刺burr7.10 铁心片预迭pre-stacking of core lamination7.11 铁心迭装core assembly7.12 铁心迭片core lamination7.13 选片pre-selection of lamination7.14 迭片lamination stacking7.15 两片一迭stacked by two-sheet7.16 打(敲)齐knock to even7.17 迭装流转台core assembly tilting platform7.18 不迭上轭core stacking without upper yoke7.19 打铁心用垫块knock block7.20 铁心料盘lamination stocking tray7.21 卷铁心机core winding machine7.22 铁心退火core annealing7.23 铁心中间试验interprocess core test7.24 片的角度偏差angular misalignment of lamination7.25 宽度偏差width deviation7.26 长度偏差length deviation7.27 铁心的垂直度verticality of core7.28 铁心起立tilt the core into vertical position7.29 迭片的定位挡板positioning stopper for core assembly7.30 硅钢片的涂漆varnish coating of silicon steel sheet7.31 片间绝缘试验lamination insulation test7.32 半导体粘带semi-conductive adhesive tape7.33 半干环氧粘带semi-cured epoxy adhesive tape7.34 粘带的固化cure of adhesive tape7.35 夹紧铁心工具clamping tools for core 7.36 铁心柱的夹紧装置tightening device for core leg7.37 铁心翻转台tilting platform of core7.38 螺旋千斤顶screw jack7.39 水平尺level gauge, level instrument7.40 专用套筒搬手special socket spanner 7.41 迭片的工艺孔punching hole on the lamination for manufacturing purpose7.42 迭板导棒guiding bar for core assembly 7.43 力短搬手torque spanner, torque wrench7.44 角度测量平台angular measuring platform7.45 切口防锈漆antirust coating for cutting edges7.46 铁心的油道撑条strips for core oil-ducts7.47 撑条粘结sticking of strips7.48 级间衬纸insulating paper between core stages7.48 冲孔模hole punching die7.49 缺口模notch punching die7.50 皮裙leather apron7.51 防护袖protective sleeve7.52 护臂shoulder guard7.53 护腿shin guardPART8 线圈制造8.1 绕线机,卷线机winding machine8.2 卧式绕线机horizontal winding machine 8.3 立式绕线机vertical winding machine8.4 绕盘架bracket for conductor drums, bracket for wire drums8.5 导线盘conductor drum, wire drum8.6 导线拉紧装置conductor tensile device, wire tensile device。

变压器励磁涌流

变压器励磁涌流

变压器励磁涌流励磁涌流(inrush current)的发生,很明显是受励磁电压的影响。

即只要系统电压一有变动,励磁电压受到影响,就会产生励磁涌流。

在不同的情况下将产生如下所述的初始(initial inrush)、电压复原(recovery inrush)及共振(sympathetic inrush 共感)等不同程度的励磁涌流。

其瞬时尖峰值及持续时间,将视下列各因素的综合情况而定,可能会高达变压器额定电流的8~30倍。

变压器的容量、变压器安装地点与大电源的电气距离、电力系统容量的大小、由电源至变压器间电力系统的时间常数L/R值、变压器铁心特性及其设计时所用饱和磁通密度值、加压操作前变压器的剩磁值(residual flux残磁值)、加压操作时瞬间电压的相位角度。

1、励磁起始涌流(initial inrush)当开始加压于变压器的最初瞬间,一瞬态性的励磁涌流,将由电力系统涌入变压器。

在此情况下所产生的励磁涌流,称之为励磁起始涌流(initial inrush)。

在停用变压器时,即使系统电压已被切断,而变压器的励磁涌流也已降为零,即ie=0时,但其铁心中的磁通并不随之降为零,而是沿着铁心的磁滞特性环(hysteresis loop),回降至某一程度的剩磁值(residual flux残磁值)。

该值的大小与系统条件及操作情况均有关联。

今假设变压器在上次断电时其剩磁值为ΦR,而当变压器再次操作电压时,其瞬间电压所产生的磁通波形恰与ΦR 连接。

且平滑地持续以前的磁通波形继续下去。

在此情况下的励磁涌流将无瞬态励磁过程。

假设当再次加电压于变压器的瞬间,其磁通值发生在磁通波形的(负)最大值处(-Φmax)。

而此时的剩磁ΦR却为正值,且剩磁不会瞬间立刻消失。

是以由加电压操作所新建的磁通波形不会是从其(-Φmax)值开始,而是从ΦR值开始。

在此情况下产生的励磁涌流,将有极大的瞬态现象。

但由于断路器的投入时间是无法控制,所以实际上类似上面所说的无瞬态励磁过程几乎是不可能的。

变压器英译词汇表

变压器英译词汇表

Chopped wave lightning impulse
49 冲击伏秒特性
Voltage time characteristics of impulse
50 爬电距离
Creepage distance
51 体积电阻
Volume resistance
52 截断时间
Time to chopping
Discharge
30 局部放电
Partial discharge
31 破坏性放电
Disruptive discharge
32 局部放电起始电压
Partial discharge inception voltage
33 局部放电终止电压
Partial discharge extinction voltage
58 标称值
Nominal value
59 导电率
Admittance
60 电导
Conductance, conductivity
61 介质损耗率
Dielectric loss
62 介损角的正切值
Loss tangent
63 电晕放电
Corona discharge
64 闪络
Flashover
65 内(外)绝缘
154 焦耳
Joule
155 千瓦时
Kilowatt-hour
156 特斯拉
78 复合误差
Composite error
79 暂态特性(误差) Transient characteristics(error)
80 额定短时热电流
Rated short thermal current
81 额定连续热电流

电力系统专业英语词汇

电力系统专业英语词汇

电力系统专业英语词汇1➢电力系统power system 发电机generator 电动机motor➢励磁excitation 励磁器excitor➢电压voltage 电流current 母线bus➢变压器transformer 升压变压器step-up transformer➢降压变压器step-down transformer 档位:tap position➢空载损耗:no-load loss 空载电流:no-load current➢有功损耗:active power loss 无功损耗:reactive power loss➢铁损iron loss 铜损copper loss➢输电系统power transmission system 输电线transmission line➢配电系统Power distribution system➢高压: high voltage 低压:low voltage 中压:middle voltage➢高压侧high side电力系统专业英语词汇2➢稳定stability 功角稳定angle stability 电压稳定voltage stability➢暂态稳定transient stability 静态稳定steady stability➢电厂power plant 能量输送power transfer➢交流AC (alternating current) 直流DC (direct current)电网power grid➢落点drop point 开关站switch station 调节regulation➢高压并联电抗器high voltage shunt reactor➢并列的:apposable 裕度margin➢故障fault 三相故障three phase fault 分接头:tap➢切机generator tripping 高顶值high limited value 静态static (state)➢动态dynamic (state) 机端电压控制A VR➢电抗reactance 电阻resistance➢功角power angle 有功(功率)active power电力系统专业英语词汇3➢电容器capacitor 电抗器reactor 断路器breaker➢电动机:motor 功率因数:power-factor 定子:stator➢功角power-angle 转子:rotor➢电压等级voltage grade➢有功负载: active load 无功负载:reactive load➢阻抗impedance电阻:resistor 电抗:reactance 电导:conductance 电纳:susceptance电力系统专业英语词汇4➢上限:upper limit 下限:lower limit➢正序阻抗:positive sequence impedance 负序阻抗:negative sequence impedance零序阻抗:zero sequence impedance➢无功(功率)reactive power 功率因数power factor 无功电流reactive current➢斜率slope 额定rating 变比ratio➢参考值reference value➢电压互感器PT电流互感器CT电力系统专业英语词汇5➢仿真分析simulation analysis➢传递函数transfer function➢框图block diagram➢受电端receive-side 送电端sending-side➢同步synchronization异步asynchronization➢摇摆swing 阻尼damping➢无刷直流电机:Brushless DC motor机端generator terminal➢断路器circuit breaker➢刀闸(隔离开关):Isolator(disconnector)接地刀闸earthing disconnector 电力系统专业英语词汇6➢变电站transformer substation➢永磁同步电机:Permanent-magnet Synchronism Motor➢异步电机:Asynchronous Motor➢三绕组变压器:three-column transformer➢双绕组变压器:double-column transformer➢固定串联电容补偿fixed series capacitor compensation➢双回同杆并架double-circuit lines on the same tower➢单机无穷大系统one machine - infinity bus system电力系统专业英语词汇7➢励磁电流:magnetizing current➢电磁场Electromagnetic fields➢失去同步loss of synchronization➢装机容量installed capacity➢无功补偿reactive power compensation➢并联电容器:shunt capacitor➢线路补偿器line drop compensation➢补偿度degree of compensation➢故障切除时间fault clearing time➢极限切除时间critical clearing time➢强行励磁reinforced excitation➢下降特性droop characteristics 下降率droop rate。

  1. 1、下载文档前请自行甄别文档内容的完整性,平台不提供额外的编辑、内容补充、找答案等附加服务。
  2. 2、"仅部分预览"的文档,不可在线预览部分如存在完整性等问题,可反馈申请退款(可完整预览的文档不适用该条件!)。
  3. 3、如文档侵犯您的权益,请联系客服反馈,我们会尽快为您处理(人工客服工作时间:9:00-18:30)。

变压器励磁涌流的抑制变压器励磁涌流不仅导致继电保护误动,由其衍生的电网电压骤降、谐波污染、和应涌流、铁磁谐振过电压等都给电力系统运行带来不可低估的负面影响。

数十年来人们通过识别励磁涌流特征的方法来减少继电保护的误动率,但并未获得良好的回报,误动率仍居高不下。

至于对电压骤降、谐波污染、和应涌流等的消除更一筹莫展。

究其原因是人们认为励磁涌流的出现不可抗拒,只能采用“识别”的对策,即“躲”的对策。

其实,换个思路——“抑制”,是完全可以实现的,而且已经实现了。

引言变压器励磁涌流与电容器的充电涌流抑制原理完全相似,电感及电容都是储能元件,前者不容许电流突变,后者不容许电压突变,空投电源时都将诱发一个暂态过程。

在电力变压器空载接入电源时及变压器出线发生故障被继电保护装置切除时,因变压器某侧绕组感受到外施电压的骤增而产生有时数值极大的励磁涌流。

励磁涌流不仅峰值大,且含有极多的谐波及直流分量。

由此对电网及电器设备造成极为不利的影响。

1、励磁涌流的危害性1.1 引发变压器的继电保护装置误动,使变压器的投运频频失败;1.2 变压器出线短路故障切除时所产生的电压突增,诱发变压器保护误动,使变压器各侧负荷全部停电;1.3 A电站一台变压器空载接入电源产生的励磁涌流,诱发邻近其他B电站、C电站等正在运行的变压器产生“和应涌流”(sympathetic inrush)而误跳闸,造成大面积停电;1.4 数值很大的励磁涌流会导致变压器及断路器因电动力过大受损;1.5 诱发操作过电压,损坏电气设备;1.6 励磁涌流中的直流分量导致电流互感器磁路被过度磁化而大幅降低测量精度和继电保护装置的正确动作率;1.7 励磁涌流中的大量谐波对电网电能质量造成严重的污染。

1.8 造成电网电压骤升或骤降,影响其他电气设备正常工作。

数十年来人们对励磁涌流采取的对策是“躲”,但由于励磁涌流形态及特征的多样性,通过数学或物理方法对其特征识别的准确性难以提高,以致在这一领域里励磁涌流已成为历史性难题。

2、励磁涌流的成因抑制器的重要特点是对励磁涌流采取的策略不是“躲避”,而是“抑制”。

理论及实践证明励磁涌流是可以抑制乃至消灭的,因产生励磁涌流的根源是在变压器任一侧绕组感受到外施电压骤增时,基于磁链守恒定理,该绕组在磁路中将产生单极性的偏磁,如偏磁极性恰好和变压器原来的剩磁极性相同时,就可能因偏磁与剩磁和稳态磁通叠加而导致磁路饱和,从而大幅度降低变压器绕组的励磁电抗,进而诱发数值可观的励磁涌流。

由于偏磁的极性及数值是可以通过选择外施电压合闸相位角进行控制的,因此,如果能掌握变压器上次断电时磁路中的剩磁极性,就完全可以通过控制变压器空投时的电源电压相位角,实现让偏磁与剩磁极性相反,从而消除产生励磁涌流的土壤——磁路饱和,实现对励磁涌流的抑制。

长期以来,人们认为无法测量变压器的剩磁极性及数值,因而不得不放弃利用偏磁抵消剩磁的想法。

从而在应对励磁涌流的策略上出现了两条并不畅通的道路,一条路是通过控制变压器空投电源时的电压合闸相位角,使其不产生偏磁,从而避免空投电源时磁路出现饱和。

另一条路是利用物理的或数学的方法针对励磁涌流的特征进行识别,以期在变压器空投电源时闭锁继电保护装置,即前述“躲避”的策略。

这两条路都有其致命的问题,捕捉不产生偏磁的电源电压合闸角只有两个,即正弦电压的两个峰值点(90°或270°),如果偏离了这两点,偏磁就会出现,这就要求控制合闸环节的所有机构(包括断路器)要有精确、稳定的动作时间,因为如动作时间漂移1毫秒,合闸相位角就将产生18°的误差。

此外,由于三相电压的峰值并不是同时到来,而是相互相差120°,为了完全消除三相励磁涌流,必须断路器三相分时分相合闸才能实现,而当前的电力操作规程禁止这种会导致非全相运行的分时分相操作,何况有些断路器在结构上根本无法分相操作。

用物理和数学方法识别励磁涌流的难度相当大,因为励磁涌流的特征和很多因素有关,例如合闸相位角、变压器的电磁参数等。

大量学者和工程技术人员通过几十年的不懈努力仍不能找到有效的方法,因其具有很高的难度,也就是说“躲避”的策略困难重重,这一策略的另一致命弱点是容忍励磁涌流出现,它对电网的污染及电器设备的破坏性依旧存在。

图2-1为一单相变压器结构图,可写出空载时初级绕组的电压方程式中N1、R1分别为初级绕组的匝数及电阻(2.1)可改写为式中α为 t=0时U1的初相角如忽略电阻R1,即设R1=0,则得求解( 2.3)式微分方程得磁通Φ的表达式为依据磁链守恒定理,合闸瞬间磁路中磁链不能突变,即可求出积分常数C。

式中可写出磁通Φ表达式式中为总磁通的幅值从式(2.6)中不难看出变压器外施电压u1在不同初相角α合闸时所产生的磁通Φ都不相同,将式(2.6)改写为式(2.7)中为暂态磁通,即偏磁,在合闸瞬间Φp的值与α有关,在90°或270°空投时Φp=0,在0°或180°空投时Φp可达峰值Φm。

式(2.7)中为稳态磁通,为一周期函数。

图2-2为空投合闸角α=0时的磁通变化曲线,图中Φs为稳态磁通,Φ为Φs和Φp合成的总磁通(未计及剩磁Φres),Φsat为变压器饱和磁通。

对于无损变压器(R1=0)偏磁Φp不会衰减,如实线所示,对于有损变压器(R1>0)Φp按时间常数衰减,如虚线所示。

从图2-2中可看出在电压相位角在θ1至θ2区间总磁通Φ大于饱和磁通Φsat,磁路饱和,因而产生励磁涌流iy,iy具有间断性。

对于无损变压器Φ和iy是关于的偶对称波形,而在iy=0的间断角区间Φ则是关于的偶对称波形。

对于有损变压器则Φ与iy将不再有对称关系。

当计及剩磁时,总磁通将由剩磁、偏磁(暂态磁通)及稳态磁通三者组成。

不难看出在图2-2偏磁的情况下,如剩磁为正,则总磁通曲线向上平移,即磁路更易饱和,励磁涌流幅值会更大。

如剩磁为负,则励磁涌流将被抑制。

图2-3是铁磁材料的磁滞回线,它描述在磁路的励磁线圈上施加交流电压时,磁势H 也相应的从-Hc到Hc之间变化,由H产生的磁通Φ(或磁通密度B=Φ/S)将在磁滞回线上作相应的变化。

如果H在回线上的某点突然减到零,则B将随即落到对应B轴的某点上,该点所对应的B值即为剩磁Br。

可以看出剩磁的数值和极性与切除励磁电压的相位角有关,如果在第Ⅰ、Ⅱ象限切断励磁电源(即H=0)则剩磁为正或零,在Ⅲ、Ⅳ象限切断励磁电源,则剩磁为负。

3、励磁涌流的抑制方法变压器在正常带电工作时,磁路中的主磁通波形与外施电源电压的波形基本相同,即是正弦波。

磁路中的磁通滞后电源电压90°,通过监测电源电压波形实现对磁通波形的监测,进而获取在电源电压断电时剩磁的极性。

变压器空投上电时产生的偏磁Φp也一样,因偏磁,电源电压上电时的初相角α在Ⅰ、Ⅳ象限区间内产生的偏磁极性为正,而初相角α在Ⅱ、Ⅲ象限区间内产生的偏磁极性为负。

显然,剩磁极性可知,偏磁极性可控,只要空投电源时使偏磁与剩磁极性相反,涌流即被抑制。

变压器初级电压u、主磁通Φ、剩磁ΦRes及偏磁Φp与分闸角和合闸角的关系曲线图,以及电源电压u分闸初相角α’与剩磁ΦRes的关系曲线。

变压器处于稳态时主磁通Φ滞后电源电压u 90°.变压器空载上电时所产生的偏磁一定与稳态时对应上电时电压u曲线上电点的稳态磁通大小相等,极性相反,其最大值可达稳态磁通Φ的峰值Φm,而剩磁ΦRes幅值与磁路材料的特性有关。

不难看出对应同一个合闸初相角α或分闸初相角α’所产生的偏磁和剩磁的极性正好相反,也就是说通过分闸时测量电源电压分闸角α’,并将α’保存下来,在下次空投变压器时选择在合闸角α等于α’时加上电源,偏磁就可与剩磁反向,它们的合成磁通将小于饱和磁通Φsat(曲线④),(因饱和磁通一般选择大于稳态磁通峰值),磁路不会饱和,从而实现对励磁涌流的抑制。

由于三相电源电压在断路器三相联动切除时所得到的三相分闸相角各相差120°,剩磁极性也是三相各相差120°,而在三相联动合闸时三相的合闸初相角也是相差120°,三相偏磁极性也各相差120°,这样就自然实现了变压器三相磁路中的偏磁和剩磁都是抵消的,从而避免了一定要断路器分相分时操作才能抑制励磁涌流的苛求,也就是说三相联动断路器支持对三相涌流的抑制。

由于抑制励磁涌流只要偏磁和剩磁极性相反即可,并不要求完全抵消,因而当合闸角相对前次分闸角有较大偏差时,只要偏磁不与剩磁相加,磁路就不会饱和,这就大大降低了对断路器操作机构动作时间的精度要求,为这一技术的实用化奠定了基础。

将这种抑制器与快切装置和备自投装置联动即可实现备用变压器按冷备用方式运行,这将大大节约变压器热备用方式的空载能耗。

图3-1选录了四条励磁涌流Iy与分闸角α’和合闸角α的关系曲线,可以看到,在合闸角α为90°或270°时,空投变压器的励磁涌流与变压器的前次分闸角无关,原因是在变压器初级电压过峰值时上电不产生偏磁,不论变压器原来是否有剩磁都不会使磁路饱和。

当然,如果使用三相联动断路器是不可能做到三相的偏磁都为零。

而当合闸角α为0°或 180°时则空投变压器的励磁涌流与前次分闸角α’密切相关,当α与α’相近(大约相差±60°)时励磁涌流被抑制,此后α与α’偏离越大,励磁涌流也越大。

由此可以看到如断路器的合闸时间漂移在±3ms时对涌流的抑制基本无影响。

当今的真空断路器和SF6断路器的分、合闸时间漂移都在1ms之内,完全可以精确实现对励磁涌流的抑制。

分闸角α’与合闸角α对励磁涌流的影响曲线图3-1应该指出,变压器断电后留在三相磁路中的剩磁在正常情况下是不会衰减消失的,不会改变极性。

只有在变压器铁心受到高于材料居里点的高温作用后剩磁才会衰减或消失,但一般的电站现场不会出现这种情况。

退一步讲,剩磁消失是件好事,只要没有剩磁,仅靠偏磁是不会引起磁路饱和的。

4、结束语电力变压器空投充电相位角与前次切除电源相位角匹配原则,从理论及实践上都证明了在使用三相联动操作断路器时能彻底抑制励磁涌流。

同样,电力电容器空投充电相位角与前次切除电源相位角匹配原则,也能实现抑制三相联动断路器合闸时的电容器充电涌流。

这一技术对根除保护误动、改善电能质量、提高运行可靠性有重要意义。

同样对各种电压等级电力系统的无功补偿、远距离输电线路的串联补偿控制等也有重要意义。

Transformer inrush current suppressionTransformer inrush current leads not only to the protective relaying misoperation, derived from the power grid voltage sags, harmonic pollution, and the inrush current, ferromagnetic resonance overvoltage in power system operation, to bring the negative effect that cannot underestimate. For decades the people through the identification of inrush current feature method to reduce the relay misoperation rate, but did not gain a good return, malfunction rate is still high. As for the voltage sag, harmonic pollution, and the inrush current, elimination of the more be nonplussed over sth.. The reason is that people think the inrush current appears irresistible, can only use" recognition " countermeasure, namely "hide " countermeasure. In fact, change a train of thought --" inhibition", can be fully realized, and have achieved.IntroductionTransformer inrush and surge suppression capacitor chargingprinciple is completely similar to the inductance and capacitance are energy storage devices, the former does not allow current mutation, which does not allow voltage surge,power drop will induce a transient process. Access in the power transformer no-load transformer outlet power failure andprotection devices to be removed, because of a side of the transformer windings to feel the surge applied voltage values are sometimes generated a great inrush current. Inrush currentpeak is not only large, and contains very many harmonics andDC component. Electrical equipment on the grid and thusresult in an extremely negative impact.1. the danger of inrush current1.1 caused by the transformer protection devices malfunction,the frequent failure of the transformer and put into operation;1.2 removal of the transformer short-circuit fault outlet voltage generated when the sudden increase in the protection induced by transformermalfunction, so that each side of the transformer load all thepower;1.3 A power station access to a power transformer no-load inrush current generated, inducing other B power station nearby, C power station transformers are running a "and should surge" (sympathetic inrush) and false tripping, resulting in a large area power failure; large inrush currentvalue of1.4 would result in electric power transformers andcircuit breakers due to excessive damage;1.5-induced over-voltage, damaged electrical equipment;1.6 inrush current of the DC component lead to over-current transformermagnetization and magnetic significantly reduce themeasurement accuracy and the correct action rate ofprotection devices;1.7 magnetizing inrush current in a large number of harmonics on power quality caused by pollution.1.8 caused by voltage sags or swells, affecting the normal operation of other electrical equipment. For decades, people have taken to the inrush current approach is to "hide", butbecause of inrush current form and characteristics ofdiversity, through mathematical or physical methods toidentify its characteristics difficult to improve the accuracy ofthat inrush current in this field has been a historical problem.2. the magnetizing inrush currentcausesSuppressor is an important feature of the strategy adopted bymagnetizing inrush current is not "escape", but "suppression." Inrush current theory and practice that can suppress or even eliminate, because the source of inrush current is generated in the transformer windings on either side felt the applied voltage increases, based on fluxconservation theorem, the windings in the magnetic circuit will produce a single polarity of the magnetic bias, such as partial pole and transformer of exactly the same as the original remanence polarity, it may bias magnetic remanence andsteady-state flux superimposed with the result of magnetic saturation, thus greatly reducing the magnetizing reactance ofthe transformer windings , and then induced a significantinrush current value. As the partial magnetic polarity and the value is applied voltage switch by selecting the phase angle control, and therefore, if we can grasp the power transformer when the last of remanent magnetic polarity, they can drop by when the control transformer the supply voltage phase angle, which allows magnetic bias with opposite polarity remanence, which eliminate the inrush current of the soil -magnetic saturation, to achieve the inrush current .For a long time, people found it impossible to measure thetransformer polarity and remanence values, and thus had to abandon the use of the idea of partial remanence magneticoffset. Inrush current in response to the strategy does notappear on the two smooth road, a road through the control power transformer voltage drop closing phase angle, so that it does not produce magnetic bias, in order to avoid magnetic saturation occurs when the power drops . The other way is the use of physical or mathematical method foridentifying the characteristics of magnetizing inrush current, in order to lock in the power transformer protection devices drop, that the aforementioned "avoid" strategy. The two fatal road has its problems, capture does not produce magnetic bias voltage closing angle of only two, namely, the two sinusoidal voltage peak point (90 ° or 270 °), if you deviate from these two points, partial there will be magnetic, which requires control of the closing part of all institutions (including circuit breakers) should be accurate, stable operating time,because, as 1 millisecond time drift action, closing phaseangle of 18 ° will produce the error. In addition, three-phase voltage of the peak is not at the same time coming, but the difference between 120 °, to completely eliminate the three-phase inrush current, must be time-phase three-phase circuit breaker closing can be achieved, and the current operating rules prohibit such power will be lead to time-sharing-phasesplit-phase operation running, not to mention some circuit breakers in the sub-phase structure can not operate.dentification with the physical and mathematical methods of magnetizing inrush current rather difficult, because the characteristics of magnetizing inrush current and a lot of factors, such as closing phase angle, the electromagnetic parameters of the transformer and so on. A large number of scholars and engineers through decades of unremitting effortsstill can not find an effective way, because of its high degree of difficulty, that is to "avoid" strategy difficult, the Achilles heel ofthis strategy is to tolerate the other excitation inrush current occurs, the pollution of its power grid and electrical equipment,there is still destructive.Transformer diagram 2-1Figure 2-1 is a single-phase transformer structure, we can write the no-load voltage of the primary winding of the equationWhere N1, R1, respectively, for the primary winding turns and the resistance(2.2)(2.1) can be rewritten as Where α t = 0, U1, such as ignoring the initial phase angleresistor R1, whichLet R1 = 0, we obtain the solution (2.3)-type equations have an expression for the magnetic flux ΦBased on flux conservation theorem, in the closing momentsmagnetic flux can not change suddenly, you can find theintegration constant C.The amplitude of the total flux from equation (2.6) is not difficult to see that the applied voltage transformer u1 in the early phase angle α diffe rent when closing the magnetic fluxgenerated by Φ is not the same, the equation (2.6) is rewritten as(2.7) for the transient flux, that is, magnetic bias, in the closing moments Φp value of α for the 90 ° or 270 ° drop at Φp = 0, at 0 ° or 180 ° when dropped up to the peak Φm Φp . Equation(2.7) in f or the steady-state flux, as a periodic function. Figure 2-2 for the drop-closing angle α = 0, the flux curve, the steady-state flux diagram Φs, Φ is Φs and Φp total flux synthetic (not taking into account t he remanence Φres), Φsat for the transformer saturation flux. For the lossless transformer (R1 = 0) magnetic bias Φp will not decay, the solid line shows, for lossy transformer (R1> 0)Closing angle α = 0, the flux curve of Figure 2-2Dashed line. As can be seen from Figure 2-3 in the voltage phase angle range θ1 to θ2 greater than the total flux Φsaturation flux Φsat, magnetic saturation, resulting inrush current iy, iy has a discontinuity.For the lossless transformer Φ and iy is about even symmetry of thewaveform, while the discontinuity in theiy = 0 is the angular range of Φt he even symmetric waveform. For Φ and iy is detrimental tothe transformer will no longer symmetrical relationship.When taking into account the remanence, the remanence will be the total magnetic flux, magnetic bias (transient flux) andsteady-state flux of the three components. Difficult to see inFigure 2-2 Bias in the case, such as remanence is positive, the total flux curve upward shift,that more saturated magnetic circuit, inrush current amplitude will be greater. If remanence is negative, the inrush current is suppressed.Core material hysteresis loop in Figure 2-3 、Figure 2-2 is the hysteresis loops of ferromagnetic materials,which describes the excitation coil in the magnetic circuit on the AC voltage applied, the corresponding magnetic potential H-Hc to Hc from between the change in magnetic flux Φ generated by H (or magnetic flux density B = Φ / S) in the corresponding hysteresis loop changes. If the H line at some point suddenly back to zero, then B will then fall into the B-axiscorresponds to a certain point, the point corresponding to theB value is the remanence Br. Remanence values can be seenwith the removal of excitation voltage and polarity of the phaseangle, and if in the first Ⅰ, Ⅱexcitation power off quadrant (ie,H = 0) then the remanence is positive or zero, in Ⅲ, Ⅳquadrant cut off the excitation power, the remanence is negative.3.the magnetizing inrush current suppression methodTransformer energized during normal working hours, the main magnetic flux in the applied voltage waveform and the waveform is basically the same, that is a sine wave. Magnetic flux lags the supply voltage of90 °, by monitoring the supply voltage waveform to achieve the flux waveform monitoring,then get off when the supply voltage polarity remanence. Dropon the power transformer magnetic bias Φp also generatedas a result of magnetic bias, the power supply voltage when the initial phase angle α in Ⅰ, Ⅳquadrant bias generated within the range of magnetic polarity is positive, while the initial phase angle α in Ⅱ, ⅲquadrant bias generated within the range of magnetic polarity is negative. Clearly, the remanence polarity shows that the magnetic polarity bias control, so long as the power drop and remanence magneticpolarity opposite side, he incurs surge suppression.Figure 3-1for the transformer primary voltag e u, the main magnetic flux Φ, and the bias magnetic remanence ΦRes Φp with sub-gate the relationship between the angle and closing angle curve, and the sub-gate supply voltage u beginning ofthe phase angle α 'with the remanence ΦRes curve. The main transformer in the steady state flux Φ lag the supply voltage u 90 °, tTransformer no-load power generated when the magnetic bias must correspond with the steady state voltage u at power point on the curve of steady-state flux power equal,opposite polarity, The maximumsteady-state flux Φ up to the peak Φm, while theamplitude of magnetic remanence ΦRes material characteristics. Easy to see the early phase corresponds to the same angle α or closing the sub-gate initial phase angle α 'and the resulting magnetic remanence of the very partial.Transformer primary voltage u, the main magnetic flux Φ, and the bias magnetic remanence ΦRes Φp with sub-gate the relationship between the angle and closing angle curve of the opposite, that is measured by the sub-gate sub-gate voltage angle α ', and α ' preserved, the selection of the transformer in the next drop in the closing angle α equal to α', when coupled with power, and bias magnetic remanence can reverse, theywill be less than the synthesis of magnetic flux saturation f lux Φsat .(Due to saturation flux is generally larger than the steady-state flux peak selection), the magnetic circuit is not saturated, in order to achieve inrush current suppression. As the three-phase three-phase supply voltage of the circuit breaker when the linkage has been cut three-phase sub-phase of thedifference between the gate 120 °, the phase difference between the remanence polarity is 120 °, and when closing the three-phase three-phase co-linkage initial phase angledifference between the gate is 120 °, the phase difference between the partial pole is also 120 °, so that the naturalrealization of the three-phase transformer magnetic circuitbias magnetic and remanence are offset to avoid a circuit breaker must be with a time share in order to suppress inrush current demanding, that support for three-phase three-phasecircuit breaker linkage surge suppression.As long as the partial inhibition of inrush current and remanent magnetic polarity opposite to, are not required to fully offset,so when the closing angle relative to a greater angle of the previous sub-gate bias, as long as no magnetic bias and remanence are added together, the magnetic circuit not saturated, which greatly reduces the operating time of circuit breaker operating mechanism precision requirements for the practical application of this technology laid the foundation.Suppressor and fast cutting of such devices and equipmentcan be realized from the investment unit linked by cold stand by spare transformer run, which will greatly reduce no-load transformer hot standby mode energy consumption.Figure 3-3presents selected four inrush current Iy and thesub-gate angle α 'and the closing angle α of the curve, you can see, in the closing angle α of 90 ° or 270 °, drop the transformer inrush current and transformer before sub-sub-gate angle has nothing to do, because the transformer primary voltage over peak power does not produce magnetic bias, regardless of whether the original transformer magnetic saturation remanence will not. Of course, if you use three-phase circuit breaker is not possible linkage phase of themagnetic bias is zero. And when the closing angle α is 0 ° or180 ° when the drop the transformer inrush current and the previous sub-gate angle α 'is closely related to, when α and α'are similar (about a difference of ± 60 °) when the inrush current is suppressed, then α and α 'the greater the deviation,the greater the inrush current. It can be seen as closing the circuit breaker when the time shift at ±3ms surge suppression for no influence. Today's vacuum circuit breakers and SF6 circuit breaker, closing time drift are within1ms, can accurately achieve the inrush current suppression.Tripping angle α 'and closing angle α of the inrush current of Figure 3-1It should be noted, after a stay in the three-phase power transformer magnetic circuit remanence under normal circumstances will not decay away, and not to change polarity.Only in the transformer core material above the Curie point bythe high temperature will decay or disappear after the remanence, but generally the power station site will not happen. Say the least, remanence disappeared a good thing,as long as there is no residual magnetism, magnetic bias alone will not cause magnetic saturation.4.ConclusionDrop charging power transformer phase angle phase anglewith the previous removal of the power matching principle, in theory and practice have proved that the joint operation in the use of three-phase circuit breaker can be completely suppressed when the inrush current. Similarly, the power capacitor charging phase angle with the last drop cut powerphase angle matching principle, can be achieved when thecircuit breaker closing inhibit the interaction of three-phase capacitor charging surge. The technology protection malfunction eradication, improvement of power quality, improve operational reliability are important. The same variety of voltage levels of power system reactive power compensation, long-distance transmission line series compensation control is also important.。

相关文档
最新文档