KAMSTRUP热能表选型指南601

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北京康斯特产品选型手册V201009

北京康斯特产品选型手册V201009

压力附件..................................................15 现场压力校准解决方案..........................16
III
ConST273 智能数字压力校验仪
电测指标
测量功能 电流 电压 通断
输出功能 电源输出
范围 ±30.0000mA ±30.0000V
0.2, A

(0~ 100)kPa (0~ 160)kPa
0.02, G 0.02, G
0.05, G 0.05, G
0.2, A

0.05, A

(0~ 250)kPa
0.02, G
0.05, G
0.05, A

(0~ 400)kPa
0.02, G
0.05, G
0.05, A

(0~ 600)kPa
-2-
ConST211 数字压力表
仪表类型划分
基本型和本安型。
测量速度
可调,默认为 3 次/秒,最快 10 次/秒,最慢 1 次/6 秒。
本安防爆认证 CE 认证 专利产品
使用环境
公司的产品在全国电力、石油、化工、冶金、计量、铁路、军工等行业过万家单位得到了广泛的应 用,并超过同类进口产品,占据了国内市场的主要份额,确立了我们在中国市场的领导地位。公司拥有 自营进出口权,凭借产品卓越的创新与品质,获得了国际市场的充分认可。目前,主要产品已经批量出 口到以欧美为代表的全球大部分国家和地区。
附件 2 常用压力单位换算表............... 28 附件 3 常用检定规程、技术规范列表28
三、压力表校验器 手持压力泵..............................................11 便携压力泵..............................................12

热量表技术标准和产品检验方法

热量表技术标准和产品检验方法

热量表技术标准和产品检验方法1.范围本标准规定了热量表的热量计量原理与主要参数、技术要求、试验方法、检验规则和包装与贮存条件。

本标准适用于测量计算流动介质为水,温度为2~160℃,压力不大于2.5MPa的热量表。

2.引用标准下列标准包含的条文,通过在本标准中引用而构成为本标准的条文。

BSEN1434 1997国际法定计量组织的75号国际建议(OLMLR75)GB/T 778.3—1996冷水表第3部分:试验方法和试验设备JB/T 8802—1998热水表行业规范GB/T9329—1999仪器仪表运输、贮存基本环境条件及试验方法3.术语3.1热量表用于测量显示水流过热交换系统所释放或吸收的热量的仪器。

3.2整体热量表由流量传感器、计算仪、配对温度传感器等部件所组成不可分离的热量表。

3.3流量传感器安装在热交换系统中,用于采集水的流量并发出流量信号的部件。

3.4温度传感器安装在热交换系统中,用于采集热交换系统入口和出口水的温度并发出温度信号的部件。

3.5计算仪接收来自流量传感器和温度传感器对的信号,进行热量计算存储和显示系统所交换的热量值的部件。

3.6配对温度传感器在同一个热量表上,分别用来测量热交换系统的入口和出口温度的两支温度传感器。

3.7温差在热交换系统内的热载体水的入口温度和出口温度的差值.3.7.1最小温差温差的下限值,在此温差时,热量表不得超过误差界限。

3.7.2最大温差温差的上限值,在此温差时,热量表不得超过误差界限。

3.8流量单位时间通过热量表的热载体水的体积。

3.8.1最小流量热载体水在系统内的最小流量,在此流量时,热量表不得超过误差界限。

3.8.2额定流量热载体水在系统正常连续运行的最大流量,在此流量时,热量表不得超过误差界限。

3.8.3最大流量热载体水在系统内,有限时间(<1小时/天;<200小时/年)内,正常运行的最大流量,在此流量时,热量表不得超过误差界限。

3.8.4累积流量热交换系统内流过的载体水的体积的总和。

卡姆鲁普户用表安装说明

卡姆鲁普户用表安装说明
MULTICAL® 402 超声波热能表读数显示部分可延管径轴线向上最大旋转 45°, 可延管径轴线向下最大旋转 90°
水介质温度较高(90-130°C),建议积分仪部分采用墙壁式安装。其中一支温 度传感器可安装在一个测温球阀内或特殊的三通内,温度传感器有内置 M10 螺 纹;另一支温度传感器可直接安装在流量计上。
晋中市瑞阳热电联产供热有限责任公司使用卡姆鲁普户用
表安装说明
丹麦卡姆鲁普公司提供的超声波热能量表产品完全符合欧洲热能表 EN1434 标准,通过了欧盟计量仪器的质量认证(MID 质量认证),卡姆鲁普公司已通过 ISO9001 国际质量体系认证和 ISO14001 国际环境保护体系认证,在中国境内销 售的热能量表已获得国家技术监督局颁发的进口计量器具型式批准证书。
MULTICAL® 402
基本单元
1.5 m 固定长度的信号电缆 (可以与积分仪分离安装,但 不能分体))
内置模块(有数据通讯、 M-Bus通讯和无线通讯)流Leabharlann 传感器接线盒(无电子器件)
流量传感器
6
z 安装注意:
卡姆鲁普超声波能量表可满足水平或垂直安装的技术要求,超声波流量计安 装时不要在流量计前端留直管段距离。
度、回水温度、温差、运行时数、当前功率、峰值功率和峰值流速等等; z 数据记录保持 460 天,36 个月和 15 年; z 能量单位 GJ,供水管安装,水平或垂直安装可选。 z 根据欧洲 EN1434 热能表检测标准:可整体或分离式安装,不影响计量检
定精度。计量等级:EN1434—2 级
z 型号:热能表MULTICAL ® 402
在项目中提供超声波热能表的技术参数如下: z 介质为水,介质温度:15-130℃ z 温度测量范围:10-160℃ z 温差范围:3-150K; z Pt500 型温度传感器,电缆长度选型 1.5 米; z 防护等级:IP54, z 相对湿度:不超过 85%; z 压力级别:PN16,螺纹连接; z 电源:电池供电,使用寿命 16 年; z 积分仪高亮度液晶显示:能显示热能耗、累计流量、瞬时流量、供水温

如何选择热量表型号及其安装使用详解

如何选择热量表型号及其安装使用详解

如何选择热量表型号及其安装使用详解以下就热表的设计选型及安装使用中的注意事项作一简单介绍,并就有关配套管理规定提出建议。

1设计中应注意的问题1.1设计选型在设计选型时,应根据供热系统的运行条件及环境状态来确定热表的型式、尺寸、准确度及环境等级等参数。

其中涉及许多的因素,主要应注意考虑以下几点。

1.1.1热表型式热表包括3部分:流量传感器、配对温度传感器和计算器。

常见的热表有机械式、电磁式、超声波式、振荡式等等。

一般来说采用机械式流量计量的热表的价格会比采用非机械式流量计量的热表低;但非机械式热表的精度及长久稳定性要比机械式的好,相应的故障率及运行维护成本也就比机械式的低。

选用时应综合考虑一次投资及维护保养等成本。

1.12介质温度介质温度涉及供回水的最高、最低温度及最大、最小温差。

如果介质温度及供回水温差超出热表的使用范围,有可能导致测量误差超标或造成热表的损坏。

1.1.3系统压力供热采暖系统中一般采用的系统压力有PN10,PN16和PN250热表的设计制造也是按此分级进行的,可根据系统压力选用相应额定压力的热表。

如果管道内的压力波动超过1.5倍额定压力的话,热表的流量测量元件有可能会受到损坏。

1.1.4流量及管径系统流量是热表选型的最重要参数之一。

通常,管径与管内流量是相互对应的。

对于一个设计合理的系统而言,其管道直径与热表的口径可能非常接近或相同。

但二者并不一定等同。

一些设计人员习惯于按系统管径来选用热表,这是错误的。

因为,选用热表的主要参数是系统流量而不是系统管径,应该按照流量大小来确定热表的型号。

鉴于工程设计中通常计算的是最大负荷状态下的流量,而在实际运行中多数情况F的流量都远远小于这个流量,所以,有时按照最大设计流量的80%来确定热表的额定流量往往更符合实际运行要求。

国内以往设计时采用的系统管内流速较低,管径偏大,所以按流量方式选择的热表的口径往往会比系统管道口径小。

在这种情况下,建议采用变径措施。

热能表 22PEM-1U 操作手册说明书

热能表 22PEM-1U 操作手册说明书

热能表 22PEM-1U.. MID 2014/32/EU EN 14342021-09/B 版2热能表 22PEM-1U..目录页码说明概述法律公告安装说明4 6 7供电11操作控制与指示12接线图说明接线分配模拟输出连接与BACnet, Modbus, MP-Bus连接传感器接线与M-Bus连接13 14 15热能表激活显示图标激活注意事项激活步骤16 17 18显示回路用户回路诊断回路22 24错误代码26密封与安全封条出厂封条系统安全封条妥善粘贴安全封条28 29 30传感器模块更换31传感器模块备件34配件可选配件354Subject to technical modifications热能表 22PEM-1U..说明认证热能表符合EN1434的要求,并根据欧洲测量仪器指令(MID) 2014/32/EU(MI-004)进行了型式认证。

热能表被作为热量表获得认证,并没进行冷量表认证。

因此,在法律要求的交易中使用热能表作为冷量表是不符合法规要求的,但可在任何时间将热能表用作“内部使用”的冷量表。

使用与功能热能表用于记录闭式供暖系统、制冷系统或供暖/制冷系统中的热能。

交货范围 –热能表–两条连续编号(一次性)的安全封条,带有大约40cm的接线 –绝缘外壳 –硅胶套圈–安装指南T1T2逻辑模块传感器模块水质要求只有当水质满足AGFW 建议的FW-510和VDI 2035的条件时,才能保证热能表测量的稳定性。

热能表安装在调试和安装热能表之前,应仔细研究操作手册,以防止安装调试过程中出现错误。

本操作手册适用于以下热能表搏力谋产品型号DNDN (″)G (″)额定流量 qp (m 3/h)22PEM-1UC 151/23/4 1.522PEM-1UD 203/41 2.522PEM-1UE 251 1 1/4 3.522PEM-1UF 32 1 1/4 1 1/2622PEM-1UG 40 1 1/221022PEM-1UH5022 1/215热能表结构热能表由一个传感器模块和一个逻辑模块组成。

DMXC2000 MBus 转 Modbus 转换器 使用说明书

DMXC2000 MBus 转 Modbus 转换器 使用说明书

DMXC2000MBus转Modbus转换器使用说明书二零一四年三月北京黑蚂蚁节能技术有限公司第一章产品简介1.1产品概述MBUS转MODBUS是指MBUS协议和MODBUS协议的互相转换,使用于任何MODBUS主站读取MBUS设备的数据。

转换器最多支持256块热能表数据的读取,支持所有欧洲标准协议的超声波仪表,如:卡姆鲁普(Kamstrup)、西门子、兰吉尔(Landis+Gyr)、恩乐曼、埃创、非特拉、天罡、伟岸、瑞纳、爱拓利、真兰、荷德鲁美特、丹佛斯等公司生产的热量表、水表通讯。

支持所有国家标准(CJ-T_188)的超声波仪表和水表。

也可以跟据用户的实际需求,定制读取其他MBUS仪表的数据。

模块支持多类型表同时挂接。

提供配套管理软件,可以配置MODBUS地址、波特率、校验位及仪表类型等。

转换器采用DC12V输入电压,MBUS接口用于连接MBUS仪表(具有总线短路保护功能),RS485用于和MODBUS主站连接,RS485采用光电隔离。

如果读取欧洲标准协议的仪表,可以采用一级地址读取仪表数据,仪表地址必须设成1~256,如果采用二级地址采集仪表数据,就需要把仪表的二级地址和逻辑短地址(1~255)进行映射,通过逻辑短地址(1~255)读取仪表数据,仪表的型号可以由用户设定。

注:国家标准(CJ-T_188)协议不支持多级地址,只能通过地址映射来实现短地址(1~255)的通信。

1.2产品技术特性1、供电电压:DC12V输入。

2、隔离:电源、MBUS、RS485三端隔离。

3、MODBUS:MODBUS RTU从设备(波特率1200-115200可配置,地址可配置,校验可配置,8位数据,1位停止位)4、MODBUS连接方式:RS4855、负载:最多支持256块仪表,表的型号可设置;6、MBUS波特率:默认2400波特率,8位数据,偶校验,1位停止位,可设置;7、出厂设置:MODBUS波特率:9600,无校验,1位停止位8、工作温度:-20~+70度1.3MODBUS寄存器与超声波热表的数据对应表MODBUS寄存器地址对应数据备注40001-40002累计热量精确到小数点后2位40003-40004累计流量精确到小数点后2位40005-40006热功率精确到小数点后2位40007-40008流速精确到小数点后2位40009进水温度,单位:0.01℃精确到小数点后2位40010回水温度,单位:0.01℃精确到小数点后2位40011-40012累计工作时间,单位:小时40013-40014累计故障时间,单位:小时40015-40018累计热量单位字符串格式类似于"MWh","GJ"40019-40022累计流量单位字符串格式类似于"m^3"40023-40026热功率单位字符串格式类似于“W”,“kW”40027-40030流速单位字符串格式类似于"l/h","m^3/h"1.4MODBUS寄存器与远传水表的数据对应表MODBUS寄存器地址对应数据备注40100-40101当前累计流量精确到小数点后2位40102-40103结算日累计流量精确到小数点后2位,部分水表没有该数据。

能量计量系统简介

能量计量系统简介

超声波能 量表
超声波能 量表
超声波能 量表
超声波能 量表
超声波能 量表
超声波能 量表
超声波能 量表
超声波能 量表
目录
现状调研析
能量计量系统概述 能量计量系统架构 能量计量系统的部分品牌介绍 HYDROMETR Kamstrup
Zenner
能量计量系统部分品牌介绍
现状调研析
品牌
产地 价格情况 超声波流量计 软件功能 上海销售机构
ห้องสมุดไป่ตู้
大口径热量表用温度传感器 - 温度可达 180 °C - 6 mm 护套 - 长度 120, 140 mm
直接插入式温度传感器 - 用于高精度测量 - 温度可达 140 °C - M10 螺纹接口thread
谢谢!
目录
现状调研析
能量计量系统概述 能量计量系统架构 能量计量系统的部分品牌介绍 HYDROMETR Kamstrup
Zenner
Kamstrup 系统
现状调研析
卡姆鲁普能量计量系统架构
Kamstrup 系统
现状调研析
M-BUS是一个BUS系统,专门用于热表, 冷表、水表、电表以及煤气表的通信。系 统包括M-BUS区域管理器和带M-BUS通信的 能量表。不同波特率和类型的表可以作为 一个整体存在于M-BSU系统中,通过双绞线 进行连接。 所连接的表可以直接通过M-BUS区域管理 器读取数据,在M-BUS区域管理器上面显示 或通过读数软件来读取数据。 M-BUS系统中所带表中的模块的电量也是 由M-BUS区域管理器来提供的,这将有助于 延长能量表中电池的使用寿命。
Kamstrup 系统
现状调研析
配电温度传感器分别安装在供热 /制冷系统中的供水管和回水管,并 与能量计算器和流量计一起使用。 根据使用方式不同,温度传感器 可以分为有套管式和短管直插式带 温度补偿套管式温度传感器。 温度传感器内部采用铂电阻,其 阻值随温度变化而变化,通过测量 阻值可以得到模拟的温度信号。 热能表热量计算值是根据所测量 的供水和回水的温度和体积流量来 计算能耗。

贝利摩热能管理系统:能量阀门和热能表说明书

贝利摩热能管理系统:能量阀门和热能表说明书

Discover the advantages:Belimo Energy Valve™ & Thermal Energy MeterEnergy Valve and Thermal Energy Meter2P F _35 – 04/2023 – S u b j e c t t o t e c h n i c a l m o d i fi c a t i o nsThe new Energy Valve and Thermal Energy Meter provide energy control and efficient energy billing. Accurate measurement and monitoring of energy consumption in a heating and cooling system with direct IoT-based cost accounting using a single device. Theyare designed to EN1434/MID standards, ensuring high accuracy and reliability, allowing for transparent tenant billing. Belimo is stepping into a new era of integrated thermal energy management.Transparent tenant billing3 Energy Valve and Thermal Energy MeterThe Belimo Energy Valve is an IoT cloud-connected pressureindependent valve that monitors coil performance and energyconsumption while maintaining Delta T. With a patented glycolmonitoring and compensation feature that provides accurate,repeatability flow measurement and ensures glycol content meetsdesign requirements.“The installation of EnergyValves in Citizens Plaza, RachelJackson, and the AndrewJackson building was a majorsuccess. The results exceededmy expectations. We now havesavings that we can see.”Chad Lovell, Operationsand Safety SpecialistJones Lang LaSalle Energy savingsyou can seeCloud OptimizationMonitors and enhances energy usage delivering optimalsystem performance. System analytics are alsoprovided to show historical performance.Delta T ManagementThe Belimo Delta T Manager algorithm reduces pumpingand chiller/boiler operating costs by increasing plantefficiency and maintaining design Delta T.Energy MonitoringAn integrated energy meter provides accurate coil andenergy consumption data for tenant billing. The data is usedto verify system performance after commissioning and actsas a baseline. This feature helps achieve LEED pointsthrough Energy and Atmosphere within credits 1 and 5.Energy Valve and Thermal Energy Meter4P F _35 – 04/2023 – S u b j e c t t o t e c h n i c a l m o d i fi c a t i o n sKey features at a glanceCertified metering, MID approvalThe requirements meet EN 1434 and type approval according to theEU MID 2014/32/EU (MI-004).IoT-based billingOwner-authorized third parties are able to securely access data consumptionand provide billing services.Digitally supported workflowsThe Belimo Assistant App guides youthrough the setup process.Easy integrationUsing BACnet IP or MSTP , Modbus TCPor RTU, the Energy Valve can easily communicate directly to the BMS.Power over Ethernet (PoE)The device can connect with one standard Ethernet cable that providespower and allows data transmission.Modular designThe unit consists of two temperaturesensors and a BTU meter withmetering and logic functionality.5Energy Valve and Thermal Energy Meter P F _35 – 04/2023 – S u b j e c t t o t e c h n i c a l m o d i fi c a t i o n s aPower ControlAllows the power output to be set to a specific value providing a linear response, making the coil and valve characteristic irrelevant allowing the Energy Valve to be both pressure and temperature independent.Energy monitoringThe thermal energy data is accurately measured, logged, and identifies areas for optimization when detected.Glycol measurement and compensationEquip with a patented glycol algorithm that compensates to ensure accurate readings.Delta T ManagerLogic built-in monitor coil performance and optimize the available energy of the coil by maintaining the Delta T.Dynamic Coil PerformanceAccurately provides transparency inpower degradation and other operational issues in real-time.Easy interaction through NFCQuick data access, field adjustable,commissioning and troubleshooting with theBelimo Assistant App and a smartphone.Energy Valve and Thermal Energy Meter6P F _35 – 04/2023 – S u b j e c t t o t e c h n i c a l m o d i fi c a t i o n sThermal Energy MeterBelimo’s new Thermal Energy Meters are designed according to EN1434/MID standards and provide remote IoT-based billing. The energy meters have a patented glycol monitoring and compensation feature that provides accurate, repeatability flow measurement and ensures glycol content meets design requirements. The thermal energy meters incorporate ultrasonic transit time technology with no moving parts eliminating wear over time. Each unit is individually wet calibrated to ensure accuracy and repeatability over the life of the product. The meters offer accurate and reliable measurement of energy consumed, providing customers with the information required to analyze their consumption and control costs.FEATURES –I oT -based BillingThermal energy meters offer Ethernet connectivity to support remote IoT metering and billing.–G lycol Measurement and CompensationEnergy meters are equipped with a patented glycol compensationalgorithm that automatically selects the correct glycol concentration to provide precise flow and energy measurement, ensuring reliable measurement and eliminating manual input and inaccuracy.– S eamless IntegrationWith BACnet/IP or MSTP , Modbus TCP or RTU (always on board), the thermal energy meter can communicate directly to the BMS.– O ptional PoEThe thermal energy meter can connect with one standard Ethernet cableproviding power and data transmission simplifying installation.– B uilt-in Data LoggerBuilt-in data logger captures the energy, flow, and operational data for further system optimization and efficiency.– D igitally AccessEasily set or adjust parameters using NFC and the Belimo Assistant Appor a web server.7Energy Valve and Thermal Energy Meter P F _35 – 04/2023 – S u b j e c t t o t e c h n i c a l m o d i fi c a t i o n s aBelimo Energy Valve™The Energy Valve has a patented Power Control and Belimo Delta T Manager™ logic built in to monitor coil performance and optimize the available energy of the coil by maintaining Delta T. In addition to the standard analog signal and feedback wiring, it communicates its data to the Building Management System (BMS) via BACnet MS/TP or BACnet IP as well as Modbus RTU and Modbus TCP/IP . The built-in web server enables clear visualization of the valves’ operation in real time. Performance data is stored for 13 months on board the valve. Cloud data provides lifetime data access.FEATURES –D elta T Optimization & Flow Setpoints Cloud analytics provide recommended Delta T and flow setpoints which can be updated remotely or automatically to save time and improve efficiency.–P erformance ReportingKey performance indicators aregraphically illustrated showing current and historical performance data of flow rates, energy usage, Delta T, and other points of interest.–O ptional PoEThe device can be powered, and the data transferred directly via an Ethernet cable (PoE)–O nline Tech SupportBelimo’s industry leading technical support team available to assist you remotely.–S oftware UpdatesLatest software and security updates automatically provided for maximumproductivity and reliability.Energy Valve and Thermal Energy Meter8P F _35 – 04/2023 – S u b j e c t t o t e c h n i c a l m o d i fi c a t i o n sDigitally supportedWebviewSafe and easy interaction through NFC with the Belimo Assistant App and your smart phone provides quick data access, field adjustable, commissioning, and troubleshooting. Configure and ensure proper performance. Local override function for commissioning and maintenance during operation (when powered) is possible with a few clicks. More transparency, easily read and forward parameters for more efficient operation.Webview is an onboard graphical user interface that provides the ability to easily configure and change parameters on the Thermal Energy Meter and Energy Valve. The operation overview provides flows, temperatures, energy, glycol concentration, Delta T, operational errors, and other system information, along with historical trend data. Below is an example of the overview page of Webview for the Energy Valve.Cloud ConnectionConnecting to the Belimo cloud offers a variety of benefits. By maintaining the Energy Valve in the cloud, authorized users can interact with the data directly or change parameters. Device owners can approve third-party vendors to integrate API via the cloud, enabling additional features such as billing oranalytical services; the possibilities are endless.9Energy Valve and Thermal Energy Meter P F _35 – 04/2023 – S u b j e c t t o t e c h n i c a l m o d i fi c a t i o n s aPlatform for on-siteEnergy Valve optimizationThe Belimo Clear Edge is an analytical device that leverages the data from all installed Energy Valves in a BACnet Building Automation System (BAS). It automatically analyzes the Belimo Energy Valve data to optimize, manage, and monitor key performance indicators of water coil performance and hydronic energy consumption. The Clear Edge offers trending capability with automated Delta T setpoint adjustment to increase system performance and energy savings strategies. An internet connection is not needed.The Belimo Clear Edge technology is accessible as a plug-in for SkySpark from Stackhub ().FEATURES – A ggregated Start ScreenA simplified view of Key Performance Indicators (KPI’s) including BACnet object name, instance number, supply and return temperatures, Delta T, delta setpoint, flow, current energy usage, and 30 days of energy consumption.– E nergy DashboardInput cost and kWh data, pump efficiency, and other building specific variables provide aggregated cost and energysavings due to reduced pumping. Reporting is available by the day, month, quarter, and year.– A utomatic and Continuous Delta T OptimizationSoftware analytics providing the optimal Delta T and flow setpoints, which are automatically written to the Delta T Manager to save time and improve efficiency.– C oil Power and Delta T CurvesScatter plots that automatically generate load profiles and flow saturation points of coil characteristics and Delta T performance.– S etpoint ConfigurationChange parameters on installed Energy Valves individually or collectively.– A utomatic DiscoveryEnergy Valves on a BACnet network are viewable with a single click. Point mappings automatically provide fastand easy analysis and optimization.Energy Valve and Thermal Energy Meter10P F _35 – 04/2023 – S u b j e c t t o t e c h n i c a l m o d i fi c a t i o n sMost capable valvein the HVAC industryFeaturesTypical PI Valve*Energy Valve*Typical pressure independent valves based on globe valve technology.11Energy Valve and Thermal Energy Meter P F _35 – 04/2023 – S u b j e c t t o t e c h n i c a l m o d i fi c a t i o n s aAwards and accoladesAwards2019 –C ontrol Trends: HVAC Control Valve Solution of the Year2018–EnergieGenie Award2017–AHR Expo: Innovation Award Finalist2016– ACME: Innovation Award – P oznan International Trade Fair:Gold Medal – C ontrol Trends: Energy SavingsSolution Product of the Year 2015– E nergy Show: Best Energy EfficientProduct of the Year – AREX: Award of Excellence – CSA: Innovation in Commissioning – D eutscher Rechenzentrumspreis:German Data Centre Prize 2014– C ontrol Trends: Energy SavingProduct of the Year – AHR EXPO: Innovation Award – Shanghai Energy Conference: Golden Key Award – Poznan International Trade Fair: Gold Medal 2013– B uilding Efficiency Congress Fair:Building Efficiency Award – Interclima Show: Silver Trophy Award – B CIA: Technical Innovation of the YearProducts – Trade Fair: Building Efficiency – I nnovation Competition:Intelligent Energy Management 2012– C ontrol Trends: Best CommercialProduct of the Year – H VR Awards: Air Conditioning Productof the YearNew Energy Valve Technology at Charles Hayden Library Reaps the Rewards of Higher Delta T!“One thing that impressed us was having such intelligence right on the valve actuator,” said PeterCooper, Manager of Sustainable Engineering and Utility Planning at MIT, Hayden Library. “You can characterize a coil’s performance with just a couple of pieces of data and with that information you can observe the degradation of coils and refocus your maintenanceefforts accordingly.”Belimo Energy Valve™ Cures Medical University’s Low Delta T!“The University started seeing a 10-degree Delta T,” said Scott Czubkowski, PE, Director of Engineering at Kerney Associates. “It went from a 7-degree to a 10-degree Delta T within a day.” But that was not all. Kerney and Associates found that within one hour, the system went from using600 gallons of water to 100 gallons per minute.Red Wing School District will Achieve Payback in Under Two Years.“Savings are always difficult to quantify for new buildings; however, at River Bluff, we are pumping approximately 50% less water than that of a similar sized building in our district,” Kevin Johnson, Director of Building and Grounds and Technology Director, Red Wing School District said. “This equates to substantial pump cost savings over the long-term and represents an improvement overtraditional valves, which often deliver far more GPM than needed to maintain temperature setpoints.”Belimo Energy Valve Retrofit at Tennessee State Office Building Reduces District Energy Chilled Water Usage by 49%“As a result of the retrofit project, we were able to reduce chilled water pumping by 49%, which equated to about $23,000 in annual savings”, said Chad Lovell. “The total cost of the project, including installation, was $53,474. A simple financial calculation produced a payback in about 2.4 years. The installation of Energy Valves inCitizens Plaza, Rachel Jackson, and the Andrew Jackson building was a major success. The results exceeded myexpectations. We now have savings that we can see.”P F _35 – 04/2023 – S u b j e c t t o t e c h n i c a l m o d i fi c a t i o n s12All inclusiveAt Belimo, we continually invest in new technologies that increase customer value by improving occupant comfort, energy efficiency,simplified installation, and maintenance-free operation. Our sales team is available to consult and provide insight and advice on how to achieve the best solution to help increase your system performance.Belimo will continue to focus on providing you with exceptional product availability, fast delivery times, and world-class customer service and technical support. We remain dedicated to continuously improve our standards and are committed to providing you the highest value possible.Whatever your HVAC application, our global network of support experts are on hand and ready to assist.5-year guaranteeComplete product range Short delivery timeOn site around the globeTested qualityComprehensive supportBelimo AmericasUSA, Latin America, and the Caribbean: Canada: www.belimo.ca, Brazil: .brBelimo Worldwide: Energy Valve and Thermal Energy Meter。

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顶部模块

0
RTC(时钟)
1
RTC+能量差和小时记录
2
RTC+PQ 或温差限制器
3
RTC+能量和流量脉冲输出
4
RTC+数据输出
5
RTC+66C+能量和流量脉冲输出
6
底部模块

00
数据/脉冲输入
10
M-bus/脉冲输入
20
0/4…20mA 输出
23
LonWorks,FTT-10A
24
66-Cx6
调制解调器/脉冲输入+数据
KAMSTRUP 热能表选型指南
MULTICAL® 601 型超声波热能表订货选型:
积分仪型号: MULTICAL601®
67-
温度传感器
Pt100 2 线制(T1-T2)
A
Pt500 4 线制(T1-T2)
B
Pt500 2 线制(T1-T2-T3)
C
Pt500 4 线制(T1-T2)24V 脉冲输入 D
连接口径
G3/4B(R1/2) G1B(R3/4) G3/4B(R1/2) G3/4B(R1/2) G1B(R3/4) G1B(R3/4) G1B(R3/4) G1B(R3/4)
DN20 G5/4(R1)
DN25 G5/4B(R1)
DN25 G2B(R1 1/2)
DN40 DN50 DN65 DN80 DN100 DN100 DN150 DN150 DN150 DN200 DN200 DN250 DN250 DN250
03
M-bus/脉冲输入
04
M-bus/脉冲输入
08
供电

0
电池
2
230VAC
7
24VAC
8
Pt500 温度传感器

0
1.5 米电缆套管式
A
3.0 米电缆套管式
B
5 米电缆套管式
C
10 米电缆套管式
D
1.5 米短头直插式温度传感器
F
3.0 米短头直插式温度传感器
G
10 米 3 个短头直插式温度传感器
流量 (m3/h)
0.6 0.6 1.5 1.5 1.5 1.5 1.5 3.0 3.0 3.5 3.5 6.0 6.0 10 10 15 25 40 60 100 150 250 400 400 600 400 600 1000
长度 (mm)
110 130 110 165 130 165 190 190 190 260 260 260 260 300 300 270 300 300 360 360 500 500 500 500 500 600 600 600
类型编号
65-S/T-CAAA-XXX 65-S/T-CAAD-XXX 65-S/T-CDAA-XXX 65-S/T-CDAC-XXX 65-S/T-CDAD-XXX 65-S/T-CDAE-XXX 65-S/T-CDAF-XXX 65-S/T-CFAF-XXX 65-S/T-CFBA-XXX 65-S/T-CGAG-XXX 65-S/T-CGBB-XXX 65-S/T-CHAG-XXX 65-S/T-CHBB-XXX 65-S/T-CJAJ-XXX 65-S/T-CJBD-XXX 65-S/T-CKBE-XXX 65-S/T-CLBG-XXX 65-S/T-CMBH-XXX 65-S/T-FACL-XXX 65-S/T-FBCL-XXX 65-S/T-FCCN-XXX 65-S/T-FDCN-XXX 65-S/T-FECN-XXX 65-S/T-FECP-XXX 65-S/T-FFCP-XXX 65-S/T-FECR-XXX 65-S/T-FFCR-XXX 65-S/T-F1CR-XXX
项目名称 订货人 日期
P
流量计 ULTRAFLOW
1
表类型
单系统热能表

冷表
5
冷/热表
6
热水表
7
冷水表
8
多系统能量表
9
国家编码
XX
程序编号:
流量计安装位置 进水管 回水管 计量单位 GJ 显示 kWh 显示 MWh 显示
A B CCC
3 4
2 3 4
流量计型号: UFTRAFLOW®
标准的 UFTRAFLOW® 65-S/T 型超声波流量计提供 信号电缆长度为 2.5 米,若需延长信号电缆到 5 米或 10 米,改变订货编号为 65-R/T-XXX;若需要信号电 缆长度超过 10 米,需加订一台脉冲信号变送器,订 货编号为:66-99-603。
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