ANSYS连续梁计算

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ansys梁系计算

ansys梁系计算

2 梁系问题和杆系相比,梁系结构杆件的弯曲效应就需要考虑了。

这时,结点上的广义位移为线位移的基础上增加了角位移。

在Ansys中二维梁单元和三维梁单元的分别是Beam3和Beam4,它们结点上的位移分别是3个和6个。

建立梁系结构的方法和求解步骤与前面的杆系结构完全相同,唯一不同的是它们单元特性和单元内力属性有所改变。

这里给出二维超静梁和三维精简后塔机算例来说明梁系结构的有限元计算。

 下面几个实例的代码均在Ansys5.6的ED版中调试通过。

 2.1 Ex3-35S.txt 直接建模求解超静定梁(结点少) 如图所示的两跨超静定梁,整个梁上作用有线形分布的荷载,梁的中点位置上有一个集中力作用。

梁的几何尺寸和其上的荷载和边界条件如图所示,试利用Ansys计算该梁的变形和内力。

这里我们采用了两种不同的单元划分方案,分别计算出了变形和内力,并给出了内力图。

从内力图的比较可以看出,不同单元划分对内力图的形状有明显影响。

所以在利用直线连接绘制内力图时需要比较多的节点和单元才可以得出比较准确的内力图。

 第一个例子对两跨超静定梁采用了最少的结点(3个结点)和单元(2个单元)个数来说明梁系结构的有限元计算过程。

由于采用了太少的结点和单元,计算结果画出的的剪力图和弯矩图是不准确的,请读者注意。

  上图是设置了三个结点,两个单元的模型,完全固定左侧结点,右侧结点不能移动,但可以转动。

了各单元上作用有线性分布的荷载,在中间结点上有向下的集中力。

 经过计算,利用单元表定义技术,利用单元上的画直线方法得到了该梁剪力图(如上图)和弯矩图(如下图)。

 显示这两个内力图的趋势是不对的,但在结点上的内力值是正确的。

 下面是所有命令: FINISH !退出以前模块 /CLEAR /FILNAME, EX3-35S /UNITS, CGS ! 单位采用CGS /TITLE, EX3-35S.txt, 3 NODES SIMULATION /PREP7 !进入前处理模块PREP7 N, 1, 0, 0 !定义各个结点 N, 2, 15, 0 N, 3, 30, 0 NPLOT ! 图形中不显示结点号码 NPLOT, 1 ! 图形中显示结点号码 NLIST ! 在直角坐标系统下,列出结点资料 DSYS, 1 ! 列出资料时,转换至圆柱坐标 NLIST ! 在圆柱坐标系统下,列出结点资料 ET, 1, BEAM3 !定义第一类单元为平面梁单元BEAM3 MP, EX, 1, 207e5 !定义第一类材料的弹性模量EX R, 1, 1, 0.020833, 0.5 !定义单元的第一类实常数:Area,Inertia,Height E, 1, 2 !定义各个单元两端结点的连接关系 E, 2, 3 EPLOT !用图形显示单元 ELIST !列出单元信息 FINISH !退出前处理模块 /SOLU !进入求解模块SOLUTION ANTYPE, STATIC !申明求解类型是静力分析 OUTPR, BASIC, ALL ! 在输出结果中,列出元素的结果 D, 1, UX, 0, , , , , UY, ROTZ !定义1号结点约束所有自由度UX,UY和ROTZ D, 3, UX, 0, , , , ,UY !约束3号结点的UX和UY自由度 SFBEAM, 1, 1, PRES, 0, 300 !定义各个单元上的线性分布荷载 SFBEAM, 2, 1, PRES, 300, 600 F, 2, FY, -1000 !定义在2号结点上的沿-Y方向大小为1000的集中力 SOLVE !开始求解 FINISH !退出求解模块 /POST1 !进入后处理模块POST1 PRDISP ! 显示变形数据 ETABLE,IMOMENT, SMISC, 6 ! 建立元素结果表,元素I点力矩 ETABLE,JMOMENT, SMISC, 12 ! 建立元素结果表,元素J点力矩 ETABLE, ISHEAR, SMISC, 2 ! 建立元素结果表,元素I点剪力 ETABLE, JSHEAR, SMISC, 8 ! 建立元素结果表,元素J点剪力 PRETAB ! 显示单元表资料 /TITLE, SHEAR FORCE DIAGRAM !定义图形窗口标题 PLLS, ISHEAR, JSHEAR ! 结构剪力分布图 /TITLE, BENDING MOMENT DIAGRAM !定义图形窗口标题 PLLS, IMOMENT, JMOMENT ! 结构弯矩分布图 FINISH !退出后处理模块POST1 2.2 Ex3-35C.txt 直接建模求解超静定梁(结点较多) 从上面例子看出,要得到比较符合实际情况的内力图,需要设置比较多的结点和单元。

ANSYS空间梁格法分析连续斜梁桥命令流

ANSYS空间梁格法分析连续斜梁桥命令流

/prep7!DEFINE THE ELEMENTARY PARAMETERS*DIM,L,ARRAY,10*DIM,DISTC,ARRAY,10N=4NBOX=2L(1)=20L(2)=30L(3)=30L(4)=20NUML=NBOX+3NUMC=(L(1)+L(2)+L(3)+L(4))+1CITA=25/180*3.1415926DISTC(1)=2.9584DISTC(2)=4.0802DISTC(3)=0.00DISTC(4)=4.0802DISTC(5)=2.9584!DEFINE THE NODES OF BRIDGEN, 1, 0, 0, 0.00N, NUMC, NUMC-1, 0, 0.00FILL,1,NUMCN, 200+1,(DISTC(1)+DISTC(2))*SIN(CITA)/COS(CITA), 0.0,-(DISTC(1)+DISTC(2))N,200+NUMC,NUMC-1+(DISTC(1)+DISTC(2))* SIN(CITA)/COS(CITA),0.0,-(DISTC(1)+DISTC(2)) FILL,201,200+NUMCN, 400+1, DISTC(2)*SIN(CITA)/COS(CITA), 0.0, -DISTC(2)N,400+NUMC,NUMC-1+DISTC(2)*SIN(CITA)/ COS(CITA), 0.0,-DISTC(2)FILL,401,400+NUMCN, 600+1, -DISTC(2)*SIN(CITA)/COS(CITA), 0.0, DISTC(2)N,600+NUMC,NUMC-1-DISTC(4)*SIN(CITA)/C OS(CITA),0.0, DISTC(4)FILL,601,600+NUMCN, 800+1,-(DISTC(4)+DISTC(5))*SIN(CITA)/COS(CITA ),0.0, DISTC(4)+DISTC(5) N,800+NUMC,NUMC-1-(DISTC(4)+DISTC(5))* SIN(CITA)/COS(CITA),0.0, DISTC(4)+DISTC(5) FILL,801,800+NUMC! 定义纵梁单元材料、几何参数ET,1,BEAM4MP,EX , 1, 3.45E+10MP,NUXY, 1, 0.2000MP,DENS, 1, 2600MP,ALPX, 1, 1.00E-05R,1,0.3133,0.0871,0.0959,1.0,0.25,,RMORE ,,0.00265,,,,,ET,2,BEAM4MP,EX , 2, 3.45E+10MP,NUXY, 2, 0.2000MP,DENS, 2, 2600MP,ALPX, 2, 1.00E-05R,2,1.6048,0.5486,1.5400,2.0,1.0,,RMORE ,,0.036,,,,,ET,3,BEAM4MP,EX , 3, 3.45E+10MP,NUXY, 3, 0.2000MP,DENS, 3, 2600MP,ALPX, 3, 1.00E-05R,3,2.3625,0.9885,2.2600,2.0,1.0,,RMORE ,,0.0956,,,,! 定义横梁单元材料、几何参数ET,4,BEAM4MP,EX , 4, 3.45E+10MP,NUXY, 4, 0.2000MP,DENS, 4, 0MP,ALPX, 4, 1.00E-05R,4,0.500,0.4582,0.0416,1.0,1.0,,RMORE ,,0.00879,,,,,ET,5,BEAM4MP,EX , 5, 3.45E+10MP,NUXY, 5, 0.2000MP,DENS, 5, 0MP,ALPX, 5, 1.00E-05R,5,1.0250,0.2770,0.0495,1.0,1.0,,RMORE ,,0.0609,,,,,! 生成纵向梁格单元TYPE,1MAT,1REAL,1*DO,I,1,NUMC-1,1 E,200+I,200+I+1 *ENDDO*DO,I,1,NUMC-1,1 E,800+I,800+I+1 *ENDDOTYPE,2MAT,2REAL,2*DO,I,1,NUMC-1,1 E,400+I,400+I+1 *ENDDO*DO,I,1,NUMC-1,1 E,600+I,600+I+1 *ENDDOTYPE,3MAT,3REAL,3*DO,I,1,NUMC-1,1 E,I,I+1*ENDDO! 生成横向梁格单元TYPE,5MAT,5REAL,5E,200+1,400+1 E,400+1,1E,1,600+1E,600+1,800+1 TYPE,4MAT,4REAL,4*DO,I,2,L(1),1E,200+I,400+IE,400+I,IE,I,600+IE,600+I,800+I *ENDDOTYPE,5MAT,5REAL,5E,200+L(1)+1,400+L(1)+1E,400+L(1)+1,L(1)+1E,L(1)+1,600+L(1)+1E,600+L(1)+1,800+L(1)+1TYPE,4MAT,4REAL,4*DO,I,L(1)+2,L(1)+L(2),1E,200+I,400+IE,400+I,IE,I,600+IE,600+I,800+I*ENDDOTYPE,5MAT,5REAL,5E,200+L(1)+L(2)+1,400+L(1)+L(2)+1E,400+L(1)+L(2)+1,L(1)+L(2)+1E,L(1)+L(2)+1,600+L(1)+L(2)+1E,600+L(1)+L(2)+1,800+L(1)+L(2)+1TYPE,4MAT,4REAL,4*DO,I,L(1)+L(2)+2,L(1)+L(2)+L(3),1E,200+I,400+IE,400+I,IE,I,600+IE,600+I,800+I*ENDDOTYPE,5MAT,5REAL,5E,200+L(1)+L(2)+L(3)+1,400+L(1)+L(2)+L(3)+1 E,400+L(1)+L(2)+L(3)+1,L(1)+L(2)+L(3)+1E,L(1)+L(2)+L(3)+1,600+L(1)+L(2)+L(3)+1E,600+L(1)+L(2)+L(3)+1,800+L(1)+L(2)+L(3)+1 TYPE,4MAT,4REAL,4*DO,I,L(1)+L(2)+L(3)+2,L(1)+L(2)+L(3)+L(4),1 E,200+I,400+IE,400+I,IE,I,600+IE,600+I,800+I*ENDDOTYPE,5MAT,5REAL,5E,200+L(1)+L(2)+L(3)+L(4)+1,400+L(1)+L(2)+L(3) +L(4)+1E,400+L(1)+L(2)+L(3)+L(4)+1,L(1)+L(2)+L(3)+L(4) +1E,L(1)+L(2)+L(3)+L(4)+1,600+L(1)+L(2)+L(3)+L(4) +1E,600+L(1)+L(2)+L(3)+L(4)+1,800+L(1)+L(2)+L(3) +L(4)+1/SOLACEL,,9.81,0!******************* ********************* ! 定义边界条件!**************************************** D,400+1,UX,0,,,,UY,UZD,600+1,UX,0,,,,UY,UZD,21,UY,0D,421,UY,0D,621,UY,0D,51,UY,0D,651,UY,0D,451,UY,0D,81,UY,0D,681,UY,0D,481,UY,0D,400+101,UX,0,,,,UY,UZD,600+101,UX,0,,,,UY,UZANTYPE,0/STATUS,SOLUSOLVE/POST1/REP,FASTA VPRIN,0, ,ETABLE, ,SMISC, 2A VPRIN,0, ,ETABLE, ,SMISC,8 A VPRIN,0, , ETABLE, ,SMISC, 4 A VPRIN,0, , ETABLE, ,SMISC, 5 A VPRIN,0, , ETABLE, ,SMISC, 6 A VPRIN,0, , ETABLE, ,SMISC, 10 A VPRIN,0, , ETABLE, ,SMISC, 11 A VPRIN,0, , ETABLE, ,SMISC, 12 FINISH。

ansys连续梁桥(ansys连续梁桥)

ansys连续梁桥(ansys连续梁桥)

ansys连续梁桥(ansys连续梁桥)The key steps of modeling and analysis are as follows:The center line 1, box beam to simulate the plate thickness is the sideline, box girder floor, roof, web and flange plate.2, determine the location of each key point.The thickness of flange and floor 3, correct simulation of chamfering and the thickness of the gradient.4. After entering into the process, analyze the stress and deformation./prep7/title, three, span, continus, GriderK, 1,0,0K, 2, -2.1,0K, 3, -2.6, -0.125K, 4, -2.8, -0.125K, 5, -3, -0.125K, 6, -3.4857, -0.1036K, 7, -3.9714, -0.0821K, 8, -4.4571, -0.0607K, 9, -4.9429, -0.0393K, 10, -5.4286, -0.0179K, 11, -5.9143,0.0036K, 12, -6.4,0.025K, 13, -2.800, -1.85K, 14,0.0000, -1.85Kgen, 9,1,12,1,0,0,49/8100 Kgen, 2,1,12,1,0,0,50900 Kgen, 9901912,1,0,0,34.5/8100 Kgen, 2901912,1,0,0,35900C1=0.000843399C2=0.001701323*dim, x1, array, 8X1 (1) =49/8X1 (2) =2*49/8X1 (3) =3*49/8X1 (4) =4*49/8X1 (5) =5*49/8X1 (6) =6*49/8X1 (7) =7*49/8X1 (8) =8*49/8*dim, X2, array, 8 X2 (1) =34.5/8X2 (2) =2*34.5/8X2 (3) =3*34.5/8X2 (4) =4*34.5/8X2 (5) =5*34.5/8X2 (6) =6*34.5/8X2 (7) =7*34.5/8X2 (8) =8*34.5/8*dim, Yb, array, 8Yb (1) =-c1*x1 (1) *x1 (1)Yb (2) =-c1*x1 (2) *x1 (2)Yb (3) =-c1*x1 (3) *x1 (3)Yb (4) =-c1*x1 (4) *x1 (4)Yb (5) =-c1*x1 (5) *x1 (5)Yb (6) =-c1*x1 (6) *x1 (6)Yb (7) =-c1*x1 (7) *x1 (7)Yb (8) =-c1*x1 (8) *x1 (8)*dim, YM, array, 8YM (1) =-c2* (x2 (1) -34.5) * (x2 (1) -34.5) +2.025 YM (2) =-c2* (x2 (2) -34.5) * (x2 (2) -34.5) +2.025 YM (3) =-c2* (x2 (3) -34.5) * (x2 (3) -34.5) +2.025 YM (4) =-c2* (x2 (4) -34.5) * (x2 (4) -34.5) +2.025 YM (5) =-c2* (x2 (5) -34.5) * (x2 (5) -34.5) +2.025YM (6) =-c2* (x2 (6) -34.5) * (x2 (6) -34.5) +2.025 YM (7) =-c2* (x2 (7) -34.5) * (x2 (7) -34.5) +2.025 YM (8) =c2* (x2 (8) -34.5) * (x2 (8) -34.5) +2.025 Kgen, 2,13,14,1,0, Yb (1), X1 (1), 100Kgen, 2,13,14,1,0, Yb (2), X1 (2), 200Kgen, 2,13,14,1,0, Yb (3), X1 (3), 300Kgen, 2,13,14,1,0, Yb (4), X1 (4), 400Kgen, 2,13,14,1,0, Yb (5), X1 (5), 500Kgen, 2,13,14,1,0, Yb (6), X1 (6), 600Kgen, 2,13,14,1,0, Yb (7), X1 (7), 700Kgen, 2,13,14,1,0, Yb (8), X1 (8), 800Kgen, 2813814,1,0,0,1100Kgen, 2913914,1,0, YM (1), X2 (1), 100Kgen, 2913914,1,0, YM (2), X2 (2), 200Kgen, 2913914,1,0, YM (3), X2 (3), 300Kgen, 2913914,1,0, YM (4), X2 (4), 400Kgen, 2913914,1,0, YM (5), X2 (5), 500Kgen, 2913914,1,0, YM (6), X2 (6), 600Kgen, 2913914,1,0, YM (7), X2 (7), 700Kgen, 2913914,1,0, YM (8), X2 (8), 800Kgen, 2,1,14,1,0,0, -0.5,50*********************************************************** *****************Et, 1, shell63MP, ex, 1,3.5e10MP, dens, 12500MP, prxy, 0.1667R, 1,0.25*do, I, 0,16,1A, 1+i*100,1+ (i+1), *100,2+ (i+1), *100,2+i*100*enddoA, 1,51,52,2AATT, 1,1,1Asel, noneR, 2,0.375*do, I, 0,16,1A, 2+i*100,2+ (i+1), *100,3+ (i+1), *100,3+i*100*enddoA, 2,52,53,3AATT, 1,2,1Asel, noneR, 3,0.5*做的事,我0,16,1一、3 +我100,3 +(i + 1)* 100,4 +(i + 1)* 100,4 +我* 100 一、4 +我100,4 +(i + 1)×100 +(i + 1)×100 +我* 100* enddo一、3,53,54,4一、4,54,55,5画面,1,3,1切,没有*昏暗,高清,阵列,8高清(8)= 0.2HD(7)= 0.2 +(3.4 / 7)* 0.3 / 3.4高清(6)= 0.2 + 2 *(3.4 / 7)* 0.3 / 3.4高清(5)= 0.2 + 3 *(3.4 / 7)* 0.3 / 3.4高清(4)= 0.2 + 4 *(3.4 / 7)* 0.3 / 3.4高清(3)= 0.2 + 5 *(3.4 / 7)* 0.3 / 3.4高清(2)= 0.2 + 6 *(3.4 / 7)* 0.3 / 3.4高清(1)= 0.2 + 7 *(3.4 / 7)* 0.3 / 3.4*做的事,我1,7,1R,30 + I,高清(I + 1),高清(I + 1),高清(I),高清(I)* enddo*做的事,我0,16,1*做,K,5,11,1a,k,k+50,k+1+50,k+1a,k i i 100,k +(i + 1)* 100,k + 1 +(i + 1)* 100,k + 1 + i * 100画面,1,K + 26,1切,没有* enddo* enddo切,没有R,4,0.5*做的事,我0,16,1一、4 +我100,4 +(i + 1)* 100,13 +(i + 1)* 100,13 +我* 100* enddo一、4,54,63,13画面,1,4,1切,没有C3 = 6.2474e-05C4 = 0.000126024*昏暗,H1,数组,8H1(1)= 0.25 + C3 * X1(1)×X1(1)H1(2)= 0.25 + C3 * X1(2)×X1(2)H1(3)= 0.25 + C3 * X1(3)×X1(3)H1(4)= 0.25 + C3 * X1(4)×X1(4)H1(5)= 0.25 + C3 * X1(5)×X1(5)H1(6)= 0.25 + C3 * X1(6)×X1(6)H1(7)= 0.25 + C3 * X1(7)×X1(7)H1(8)= 0.25 + C3 * X1(8)×X1(8)*暗淡,H2,数组,9H2(1)= 0.25 + C3 * x2(1)* x2(1)H2(2)= 0.25 + C3 * x2(2)* x2(2)H2(3)= 0.25 + C3 * x2(3)* x2(3)H2(4)= 0.25 + C3 * x2(4)* x2(4)H2(5)= 0.25 + C3 * x2(5)* x2(5)H2(6)= 0.25 + C3 * x2(6)* x2(6)H2(7)= 0.25 + C3 * x2(7)* x2(7)H2(8)= 0.25 + C3 * x2(8)* x2(8)H1(1)= 0.25 + C3 * X1(1)×X1(1)H2(9)=0.4*做的事,我1,8,1R,10 +1,H1(i)一、13 +(i-1)* 100,13 +我100,14 +我100,14 +(i-1)* 100 AATT咯+我,1切,没有* enddo*做的事,我1,9,1R,20 +1,H2(i)一、13 +(i + 7)* 100,13 +(i + 8)* 100,14 +(i + 8)* 100,14+(i + 7)* 100 一、13,63,64,14 画面中,+我,1 切,没有* enddoR,50,2一、1,51,64,14 一、801901914814 画面,1,50,1 切,没有全部选择esize,0.4属性值,0 mshkey,1所有的网格,汉塞尔,所有nsym,X,10000,180000,1esym,,10000,110000,1cskp,12,0171417131701nsym,Z,100000,1100000,1esym,,100000,1100000,1allsel,nummrg,所有*********************************************************** ***************************坐标系,0汉塞尔,S,LOC,Y,-1.85汉塞尔,R,LOC,x,3,2.6汉塞尔,R,LOC,Z - 0.5,0D、所有UX ,,,,, UY,ROTY,鼻疽全部选择汉塞尔,S,LOC,Y,-1.85汉塞尔,R,LOC,X,2.6,3汉塞尔,R,LOC,Z - 0.5,0D、所有UX ,,,,, UY,ROTY,鼻疽全部选择汉塞尔,S,LOC,Y,-1.85汉塞尔,R,LOC,x,3,2.6汉塞尔,R,LOC,Z,169169.5 D、所有UX ,,,,, UY,ROTY,鼻疽全部选择汉塞尔,S,LOC,Y,-1.85汉塞尔,R,LOC,X,2.6,3汉塞尔,R,LOC,Z,169169.5 D、所有UX ,,,,, UY,ROTY,鼻疽全部选择汉塞尔,S,LOC,Y,-3.875汉塞尔,R,LOC,X,2.6,3汉塞尔,R,LOC,Z,49,50D、所有UX ,,,,, UY,UZ,ROTY,鼻疽全部选择汉塞尔,S,LOC,Y,-3.875汉塞尔,R,LOC,x,3,2.6汉塞尔,R,LOC,Z,49,50D、所有UX ,,,,, UY,UZ,ROTY,鼻疽全部选择汉塞尔,S,LOC,Y,-3.875汉塞尔,R,LOC,X,2.6,3汉塞尔,R,禄,Z,119120D、所有UX ,,,,, UY,UZ,ROTY,鼻疽全部选择汉塞尔,S,LOC,Y,-3.875汉塞尔,R,LOC,x,3,2.6汉塞尔,R,LOC,Z,119120D、所有UX ,,,,, UY,UZ,ROTY,鼻疽全部选择*********************************************************** *****************************/解全部选择去,,9.8解决/桩plnsol,S,1汉塞尔,S,LOC,Z,10ESLN,,,所有plnsol,S,1完成节约。

连续梁桥ansys命令流建模求解(可编辑)

连续梁桥ansys命令流建模求解(可编辑)

连续梁桥ansys命令流建模求解!!连续梁桥/prep7et,1,4定义梁单元et,2,21 定义mass21单元!!定义粱材料 !!泊松比!!密度mp,ex,2,3.45e10 !!直线段梁材料和1M段梁材料mp,nuxy,2,0.2mp,dens,2,3302.153125mp,ex,3,3.45e10mp,nuxy,3,0.2mp,dens,3,3301.658695mp,ex,4,3.45e10mp,nuxy,4,0.2mp,dens,4,3299.906778mp,ex,5,3.45e10mp,nuxy,5,0.2mp,dens,5,3298.327219mp,ex,6,3.45e10mp,nuxy,6,0.2mp,dens,6,3292.351605mp,ex,7,3.45e10mp,nuxy,7,0.2mp,dens,7,3284.137255 mp,ex,8,3.45e10mp,nuxy,8,0.2mp,dens,8,3271.802136 mp,ex,9,3.45e10mp,nuxy,9,0.2mp,dens,9,3260.41903 mp,ex,10,3.45e10mp,nuxy,10,0.2mp,dens,10,3248.193657 mp,ex,11,3.45e10mp,nuxy,11,0.2mp,dens,11,3235.117644 mp,ex,12,3.45e10mp,nuxy,12,0.2mp,dens,12,3221.585664 mp,ex,13,3.45e10mp,nuxy,13,0.2mp,dens,13,3208.826871 mp,ex,14,3.45e10mp,nuxy,14,0.2mp,dens,14,3194.279207 mp,ex,15,3.45e10mp,nuxy,15,0.2mp,dens,15,3179.924673 mp,ex,16,3.45e10mp,nuxy,16,0.2mp,dens,16,3166.445716 mp,ex,17,3.45e10mp,nuxy,17,0.2mp,dens,17,3152.555731 mp,ex,18,3.45e10mp,nuxy,18,0.2mp,dens,18,3138.312105 mp,ex,19,3.45e10mp,nuxy,19,0.2mp,dens,19,3124.795334 mp,ex,20,3.45e10mp,nuxy,20,0.2mp,dens,20,3110.7135 mp,ex,21,3.45e10mp,nuxy,21,0.2mp,dens,21,3097.080875 mp,ex,22,3.45e10mp,nuxy,22,0.2mp,dens,22,3083.186268 mp,ex,23,3.45e10mp,nuxy,23,0.2mp,dens,23,3068.968824 mp,ex,24,3.45e10mp,nuxy,24,0.2mp,dens,24,3055.612436 mp,ex,25,3.45e10mp,nuxy,25,0.2mp,dens,25,3045.857147 mp,ex,26,3.45e10mp,nuxy,26,0.2mp,dens,26,3035.174287 mp,ex,27,3.45e10mp,nuxy,27,0.2mp,dens,27,3026.696551 mp,ex,28,3.45e10mp,nuxy,28,0.2mp,dens,28,3015.795365mp,ex,29,3.45e10mp,nuxy,29,0.2mp,dens,29,3007.710181mp,ex,30,3.45e10mp,nuxy,30,0.2mp,dens,30,3000.513837mp,ex,31,3.45e10mp,nuxy,31,0.2mp,dens,31,2978.611375mp,ex,32,3.45e10mp,nuxy,32,0.2mp,dens,32,2958.618861mp,ex,33,3.45e10mp,nuxy,33,0.2mp,dens,33,2937.888072mp,ex,34,3.45e10mp,nuxy,34,0.2mp,dens,34,2919.475751mp,ex,35,3.45e10mp,nuxy,35,0.2mp,dens,35,2903.359983!!6700处mp,ex,36,3.45e10mp,nuxy,36,0.2mp,dens,36,3302.153125!!可以不用mp,ex,37,3.45e10mp,nuxy,37,0.2mp,dens,37,3302.153125mp,ex,38,3.45e10!!-700处梁mp,nuxy,38,0.2mp,dens,38,3180.578901mp,ex,39,3.45e10!!边支点横隔板mp,nuxy,39,0.2mp,dens,39,2868.674818mp,ex,40,3.45e10 !!合拢段横隔板mp,nuxy,40,0.2mp,dens,40,2868.674818mp,ex,41,3.45e10 !!中支点横隔板mp,nuxy,41,0.2mp,dens,41,2757.470588mp,ex,1,3.25e10 定义墩材料属性mp,nuxy,1,0.2mp,dens,1,2650!!定义实常数编号 ,面积,IYY,IZZ,宽,高,,RMORE,,抗扭惯距!!主梁截面r,1,11.851,28.52,215.151,16.95,4,,!!直线段r,2,11.862,28.57,215.458,16.95,4.001,, !!截面100处rmore,,56.905r,3,11.871,28.91,215.622,16.95,4.009,,rmore,,57.345r,4,11.903,29.03,215.78,16.95,4.025,,rmore,,57.938r,5,11.932,29.626,215.88,16.95,4.049,,rmore,,58.502r,6,12.043,30.402,217.093,16.95,4.081,,rmore,,59.768r,7,12.199,31.407,218.899,16.95,4.121,,rmore,,61.445r,8,12.441,32.716,221.806,16.95,4.169,,rmore,,63.652r,9,12.673,34.21,224.418,16.95,4.226,,rmore,,66.058r,10,12.932,35.94,227.279,16.95,4.290,,rmore,,68.801r,11,13.221,37.941,230.512,16.95,4.362,, rmore,,71.948r,12,13.534,40.233,233.872,16.95,4.442,,r,13,13.843,42.747,237.133,16.95,4.530,, rmore,,79.173r,14,14.213,45.688,241.054,16.95,4.627,, rmore,,83.484r,15,14.598,48.964,245.004,16.95,4.731,, rmore,,88.155r,16,14.979,52.547,248.817,16.95,4.843,, rmore,,93.111r,17,15.393,56.562,252.927,16.95,4.963,, rmore,,98.528r,18,15.842,61.069,257.347,16.95,5.092,, rmore,,104.47r,19,16.293,65.992,261.673,16.95,5.228,, rmore,,110.742r,20,16.791,71.484,266.426,16.95,5.372,, rmore,,117.648r,21,17.303,77.568,271.225,16.95,5.525,, rmore,,124.861r,22,17.858,84.282,276.363,16.95,5.685,, rmore,,132.631r,23,18.464,91.768,281.923,16.95,5.854,,r,24,19.072,99.936,287.364,16.95,6.03,, rmore,,149.875r,25,19.524,108.482,291.159,16.95,6.214,, rmore,,158.46r,26,20.084,118.046,295.597,16.95,6.407,, rmore,,167.857r,27,20.536,128.202,298.9,16.95,6.607,, rmore,,177.137r,28,21.148,139.669,303.86,16.95,6.816,, rmore,,187.495r,29,21.626,151.737,307.186,16.95,7.032,, rmore,,197.507r,30,22.07,164.734,310.057,16.95,7.257,, rmore,,207.681r,31,23.541,182.225,323.433,16.95,7.490,, rmore,,223.527r,32,25.066,201.932,336.467,16.95,7.730,, rmore,,241.046r,33,26.871,223.700,351.448,16.95,7.979,, rmore,,257.765r,34,28.707,247.928,365.663,16.95,8.235,,r,35,30.533,274.36,378.934,16.95,8.500,, rmore,,294.461r,46,14.58,35.599,238.702,16.95,4,, rmore,,238.702!!横隔板截面!!边支点r,36,35.376,54.393,339.84,16.95,4.00,, rmore,,128.747!!合拢段r,37,35.376,53.405,339.84,16.95,4.00,, rmore,,127.015!!中支点r,38,71.981,454.871,543.871,16.95,8.5,, rmore,,684.565!!主墩截面!!截面1(实心)r,39,39.932,82.876,212.138,8,5,, rmore,,203.709!!截面(1/2空心)r,40,23.863,72.571,168.024,8,5,, rmore,,168.491!!截面3空心)r,41,14.236,52.366,114.529,8,5,, rmore,,116.391!!边墩截面!!截面1(实心1)r,42,36.113,66.217,177.703,7.7,4.7,, rmore,,165.119!!截面2(空心1/2)r,43,20.753,35.743,99.711,7,4,, rmore,,88.486!!截面3(空心)r,44,9.103,16.082,45.911,6.5,3.5,, rmore,,39.39!!截面4(实心2)r,45,22.673,23.005,79.361,6.5,3.5,, rmore,,61.527!!截面5(1/2)空心2r,49,16,21.958,68.708,6.5,3.5,, rmore,,55.682!!建立第一跨梁节点xlatan1.029/80n,1,0,n,2,2.25,2.25*xln,3,6,6*xln,4,9,9*xln,5,11,11*xln,6,13,13*xl-0.0045 n,7,15,15*xl-0.0135 n,8,17,17*xl-0.023 n,9,19,19*xl-0.038 n,10,21,21*xl-0.062 n,11,23,23*xl-0.092 n,12,25,25*xl-0.1275 n,13,27,27*xl-0.167 n,14,29,29*xl-0.2115 n,15,31,31*xl-0.261 n,16,33,33*xl-0.314 n,17,35,35*xl-0.3715 n,18,37,37*xl-0.435 n,19,39,39*xl-0.502 n,20,41,41*xl-0.5725 n,21,43,43*xl-0.648 n,22,45,45*xl-0.728 n,23,47,47*xl-0.8115n,24,49,49*xl-0.8995n,25,51,51*xl-0.9925n,26,53,53*xl-1.0895n,27,55,55*xl-1.1905n,28,57,57*xl-1.325n,29,59,59*xl-1.433n,30,61,61*xl-1.5155n,31,63,63*xl-1.6325n,32,65,65*xl-1.7535n,33,67,67*xl-1.879n,34,69,69*xl-2.007n,35,71,71*xl-2.1325n,36,73,73*xl-2.2635n,37,75,75*xl-2.399n,38,77,77*xl-2.533n,39,79,79*xl-2.631xl2atan0.7/140local,11,0,80,80*xl-2.631,0,xl2nsym,x,35,5,39,1!!复制粱结点从5到39结点编号增加35 csys,0n,75,149.6,0.15852local,12,0,150,0.15852,0,xl2nsym,x,36,40,75,1local,13,0,220,-1.6027,0nsym,x,111,1,111,1csys,0n,500,80,80*xl-2.631n,501,220,-1.6027n,502,360,-1.6148csys,0 !!返回普通坐标!!建立墩结点!!PM112边墩截面n,300,0,-2.165 !!实心)2米长n,301,0,-4.365n,302,0,-9.365!!(1/2空心)5M长n,303,0,-13.365n,304,0,-17.365n,305,0,-21.365 n,306,0,-24.93n,307,0,-28.93n,308,0,-30.63!!PM113主敦截面n,309,80,0.5-6.665-0.8n,310,80,0.5-3.5-6.665!!实心3.5mn,311,80,0.5-8.5-6.665!!1/2空心)5mn,312,80,0.5-12.5-6.665!!空心)4Mn,313,80,0.5-16.5-6.665 !!n,314,80,0.5-18.594-6.665n,315,80,0.5-22.594-6.665n,316,80,0.5-24.594-6.665+0.4!实心)2m!!pm114主墩截面n,350,220,0.5-6.665-0.8 !n,351,220,0.5-3.5-6.665 !!1/2空心5mn,352,220,0.5-8.5-6.665!!空心)5mn,353,220,0.5-12.5-6.665 !!空心)6.064Mn,354,220,0.5-16.5-6.665!!1/2空心)4Mn,355,220,0.5-19.294-6.665!!实心)2Mn,356,220,0.5-23.294-6.665n,357,220,0.5-25.294-6.665+0.4local,13,0,220,-1.6027,0nsym,x,17,300,316,1csys,0!!生成边跨1mat,39real,36e,1,2mat,38real,46e,2,3mat,2real,1e,3,4e,4,5mat,2real,2e,5,6*do,i,3,35,1 mat,ireal,ie,3+i,4+i*enddo*do,i,3,35,1 mat,ireal,ie,38+i,39+i *enddo*do,i,3,35,1 mat,ireal,ie,74+i,75+i *enddo*do,i,3,35,1 mat,ireal,ie,114+i,115+i *enddo*do,i,3,35,1 mat,ireal,ie,149+i,150+i *enddo*do,i,3,35,1 mat,ireal,ie,185+i,186+i *enddomat,41real,38e,39,500 mat,41real,38e,500,74 mat,2real,2 e,41,40 mat,2 real,1 e,40,75 mat,40 real,37 e,75,111 mat,2 real,1 e,111,76 mat,2 real,2 e,76,77 mat,41 real,38 e,110,501 mat,41 real,38 e,501,221 mat,2 real,2e,188,187 mat,2 real,1 e,187,222 mat,41 real,37 e,222,186 mat,2 real,1 e,186,151 mat,2 real,2 e,151,152 mat,41 real,38 e,185,502 mat,41 real,38 e,502,150 mat,39 real,36 e,112,113mat,38 real,46 e,113,114 mat,2 real,1 e,114,115 e,115,116 mat,2 real,2 e,116,117 !!建立桥墩!!边墩1 mat,1 real,42 e,300,301 mat,1 real,43 e,301,302 mat,1 real,44 e,302,303 mat,1e,303,304 mat,1 real,44 e,304,305 mat,1 real,44 e,305,306 mat,1 real,49 e,306,307 mat,1 real,45 e,307,308 !!主墩1 mat,1 real,39 e,309,310 mat,1 real,40 e,310,311 mat,1e,311,312 mat,1 real,41 e,312,313 mat,1 real,41 e,313,314 mat,1 real,40 e,314,315 mat,1 real,39 e,315,316 !!主墩2 mat,1 real,39 e,350,351 mat,1 real,40 e,351,352 mat,1e,352,353 mat,1 real,41 e,353,354 mat,1 real,41 e,354,355 mat,1 real,40 e,355,356 mat,1 real,39 e,356,357 !!主墩3 mat,1 real,39 e,326,327 mat,1 real,40 e,327,328 mat,1e,328,329 mat,1 real,41 e,329,330 mat,1 real,41 e,330,331 mat,1 real,40 e,331,332 mat,1 real,39 e,332,333 !!边墩2 mat,1 real,42 e,317,318 mat,1 real,43 e,318,319 mat,1e,319,320mat,1real,44e,320,321mat,1real,44e,321,322mat,1real,44e,322,323mat,1real,49e,323,324mat,1real,45e,324,325!!添加质量惯距!!两米段质量惯距r,100,,,,1293348.4!!100米处和直线段的质量惯距r,101,,,,1296019.6r,102,,,,1297493r,103,,,,1301181.8 r,104,,,,1311723 r,105,,,,1326622 r,106,,,,1348967 r,107,,,,1370728 r,108,,,,1395061 r,109,,,,1422801 r,110,,,,1452757 r,111,,,,1483258 r,112,,,,1519733 r,113,,,,1558030 r,114,,,,1597229 r,115,,,,1640292 r,116,,,,1687605 r,117,,,,1736625 r,118,,,,1790923 r,119,,,,1848602 r,120,,,,1911418 r,121,,,,1980562 r,122,,,,2052690 r,123,,,,2118097 r,124,,,,2192307r,125,,,,2263641r,126,,,,2350704r,127,,,,2432292r,128,,,,2516392r,129,,,,2679987r,130,,,,2853514r,131,,,,3048284r,132,,,,3252032r,133,,,,3462506!!边跨直线3米段r,148,,,,1293348.4*3/2!!-700处3.75米段的质量惯距r,134,,,,2725866.2!!边支点横隔r,135,,,,2246142.5!!合龙段横隔r,136,,,,833679/2!!中支点横隔r,137,,,,5292760!!添加边墩质量惯距从上到下!!变截面实心2米段r,138,,,,1163498!!1/2空心5米段r,139,,,,1794766!!空心段4米r,140,,,,657211!!1/2空心4米段r,141,,,,1085079!!实心2米段r,142,,,,1064567!!添加主墩质量惯性距从上到下!!实心3米段r,143,,,,2345361!!1/2空心5米段r,144,,,,2869095!!空心4米段r,145,,,,1769087!!1/2空心4米段r,146,,,,2869095*4/5!!实心2米段r,147,,,,2345361*2/3!!在结点处加入质量惯性距!!边跨合龙段!左边边跨real,135 e,2 type,2 real,134 e,3 type,2 real,148 e,4 type,2 real,100 e,5!!右边边跨type,2 real,135 e,113 type,2 real,134 e,114 type,2 real,148 e,115real,100e,116!!对第一个主跨的循环*do,i,6,39,1type,2real,94+ie,i*enddo!!对第二个主跨的循环*do,i,41,74,1 type,2real,59+ie,i*enddo!!对第3个循环*do,i,77,110,1 type,2real,33+ie,i*enddo!!对第4个循环*do,i,188,221,1 type,2real,-88+ie,i*enddo!!对第5个循环*do,i,152,185,1 type,2real,i-52e,i*enddo!!对第6个循环*do,i,117,150,1 type,2real,-17+ie,i*enddo!!添加质量惯距到桥墩!!左边墩type,2real,138e,301real,139 e,302 type,2 real,140 e,303 type,2 real,140 e,304 type,2 real,140 e,305 type,2 real,140 e,306 type,2 real,141 e,307 type,2 real,142 e,308!!右边墩real,138 e,318 type,2 real,139 e,319 type,2 real,140 e,320 type,2 real,140 e,321 type,2 real,140 e,322 type,2 real,140 e,323 type,2 real,141 e,324 type,2e,325!!左边主墩type,2real,143e,310type,2real,144e,311type,2real,145e,312type,2real,145e,313type,2r,400,,,,1769087*3/4 e,314type,2real,146e,315type,2e,316!!中间主墩type,2real,143e,351type,2real,144e,352type,2real,145e,353type,2real,145e,354type,2r,400,,,,1769087*3/4 e,355type,2real,146e,356type,2e,357!!右边主墩type,2real,143e,327type,2real,144e,328type,2real,145e,329type,2real,145e,330type,2r,400,,,,1769087*3/4 e,331type,2real,146e,332type,2e,333!!添加横隔板处质量惯性距!!中支点type,2real,137e,500type,2real,137e,501type,2real,137e,502!!合龙段1type,2real,136e,75type,2real,136e,111type,2r,411,,,,1293348.4*3/10e,40type,2r,412,,,,1293348.4*3/10 e,76!!合龙段2type,2real,136e,222type,2real,136e,186type,2r,411,,,,1293348.4*3/10 e,187type,2r,412,,,,1293348.4*3/10 e,151!!偶合结点cp,1,uy,1,300cp,2,uz,1,300cp,3,rotx,1,300cp,4,uy,309,500cp,5,uz,309,500 cp,6,rotx,309,500 cp,7,ux,350,501 cp,8,uy,350,501 cp,9,uz,350,501 cp,10,rotx,350,501 cp,11,roty,350,501 cp,12,uy,326,502 cp,13,uz,326,502 cp,14,rotx,326,502 cp,15,uy,317,112 cp,16,uz,317,112 cp,17,rotx,317,112 加约束d,308,all,all,0 d,316,all,all,0 d,357,all,all,0 d,333,all,all,0 d,325,all,all,0 allselfinish求解/soluantype,2 !模态分析acel,,9.8 !加载重力modopt,subsp,20!提取前30阶模态mxpand,20,,,0LUMPM,1solvefinish/post1set,list。

曲线梁桥ANSYS计算命令流

曲线梁桥ANSYS计算命令流

!****************************************************************************** ***********************! case2:无偏载(以跨径布置30m+40m+30m,桥宽8.5为例)! 上海城市设计研究院L1+L2+L3预应力混凝土曲线连续梁桥结构分析! 两端为抗扭支座,中间支座为点铰支座! 每次要记得修改横隔梁的参数,即Mass21单元的实常数!****************************************************************************** ***********************FINI/CLE/prep7!DEFINE THE ELEMENTARY PARAMETERS*DIM,L,ARRAY,10*DIM,H,ARRAY,10*DIM,CITA,ARRAY,10!*****以下参数均可修改***************N=3 !跨数L(1)=30 !第一跨L(2)=40 !第二跨L(3)=30 !第三跨e1=1.25 !1#墩处内支座到中心线的间距e2=1.25 !1#墩处外支座到中心线的间距e3=0 !2#墩处的支座偏心距(正的表示外偏)e4=0 !3#墩处的支座偏心距e5=1.25 !4#墩处内支座到中心线的间距e6=1.25 !4#墩处外支座到中心线的间距R=10000 !曲线桥半径H0=1.0 !梁底到截面形心处的高度M=16146 !mass21单元质量J=27246.38 !mass21单元转动惯量!*************************************LL=0.0*DO,I,1,NLL=LL+L(I)CITA(I)=L(I)/R/3.1415925*180*ENDDOCITA0=LL/R/3.1415925*180LOCAL,11,1,0,0,0,0,270,0CSYS,11!DEFINE THE NODES OF BRIDGEN, 1, R, -179.9999, H0N, L(1)+1, R, -179.9999+CITA(1), H0N, L(1)+L(2)+1, R, -179.9999+CITA(1)+CITA(2), H0 N, L(1)+L(2)+L(3)+1, R, -179.9999+CITA0, H0FILL,1,L(1)+1FILL,L(1)+1,L(1)+L(2)+1FILL,L(1)+L(2)+1,L(1)+L(2)+L(3)+1!DEFINE THE REFERENCE POINT OF MAIN DECKN,2000,0,0,0!***************************************************************** !DEFINE THE NODES OF RIGID BEAM OF MAIN GIRDERN, 2001, R-e1, -179.9999, H0N, 2002, R+e2, -179.9999, H0N, 2003, R+e3, -179.9999+CITA(1), H0N, 2004, R+e4, -179.9999+CITA(1)+CITA(2), H0N, 2005, R-e5, -179.9999+CITA0, H0N, 2006, R+e6, -179.9999+CITA0, H0NROTA T,ALL!*****************************************************! 定义主梁单元材料、几何参数! 混凝土标号为C40!**************梁段截面几何特性*******************ET,1,BEAM4MP,EX , 1, 3.25E+10MP,NUXY, 1, 0.2000MP,DENS, 1, 3950.50MP,ALPX, 1, 1.00E-05R,1,4.39129,2.4428,20.7089,8.5,2.0,, !跨中梁断面RMORE ,,5.0388,,,,,!**************刚臂截面几何特性*******************! 增设抗扭或偏心支座时采用ET,3,BEAM4MP,EX , 3, 3.25E+10MP,NUXY, 3, 0.2000MP,DENS, 3, 0.0MP,ALPX, 3, 1.0E-08R,3,100,1000,1000,0.5,0.5,,RMORE ,,1000,,,,,!****************生成主梁单元**********************TYPE,1MA T,1REAL,1*DO,I,1,LL,1E,I,I+1,2000*ENDDO!*********************************************************** ! 生成主梁刚臂单元!*********************************************************** TYPE,3MA T,3REAL,3E,2001,1E,1,2002*IF,e3,GT,0.0,THENE,2003,L(1)+1*ELSENSEL,U, , ,2003*ENDIF*IF,e4,GT,0.0,THENE,2004,L(1)+L(2)+1*ELSENSEL,U, , ,2004*ENDIFE,2005,LL+1E,LL+1,2006!**************************************************! 支墩处的横隔梁采用Mass21单元来模拟!**************************************************ET,4,MASS21R,100, M ,M ,M ,J ,,,TYPE,4REAL,100E,1E,L(1)+1E,L(1)+L(2)+1E,LL+1!****施加约束条件**********D,2001,UX,,,,,UY,UZD,2002,UZ*IF,e3,GT,0.0,THEND,2003,,,,,,,UZ*ELSED,L(1)+1,,,,,,,UZ*ENDIF*IF,e4,GT,0.0,THEND,2004,,,,,,,UZ*ELSED,L(1)+L(2)+1,,,,,,,UZ*ENDIFD,2005,UX,,,,,,UZD,2006,UZ!********************************************************** ! 对桥梁桥面各节点逐点加载!********************************************************** /SOLUANTYPE,0 ! 静力分析ACEL,0,0,0K=1*DO,I,1,LL+1,1TIME,KFDELE,ALL,ALLF,I,FZ,-1000SOLVEK=K+1*ENDDO!******定义各片纵梁的竖向挠度、弯矩、扭矩、剪力的包络图******** *DIM,AMAX,ARRAY,LL+1*DIM,AMIN,ARRAY,LL+1*DIM,JZMAX,ARRAY,LL+1*DIM,JZMIN,ARRAY,LL+1*DIM,DISP1,ARRAY,LL+1,LL+1*DIM,MZ1,ARRAY,LL,LL+1*DIM,MX1,ARRAY,LL,LL+1*DIM,QY1,ARRAY,LL,LL+1*DIM,DISP1MAX,ARRAY,LL+1*DIM,DISP1MIN,ARRAY,LL+1*DIM,MZ1MAX,ARRAY,LL*DIM,MZ1MIN,ARRAY,LL*DIM,MX1MAX,ARRAY,LL*DIM,MX1MIN,ARRAY,LL*DIM,QY1MAX,ARRAY,LL*DIM,QY1MIN,ARRAY,LL*DIM,KK,ARRAY,LL+1*DIM,REACTION,ARRAY,6,LL+1*DIM,REACTIONMAX,ARRAY,6*DIM,REACTIONMIN,ARRAY,6*DO,I,1,LL+1,1/POST1SET,I!*****************竖向位移***************DO,J,1,LL+1,1*GET,DISP1(J,I),NODE,J,U,Y*ENDDO!*****************竖向弯矩Mz************DO,J,1,LL,1*GET,MZ1(J,I),ELEM, J, SMISC,6*ENDDO!*****************扭矩Mx************DO,J,1,LL,1*GET,MX1(J,I),ELEM, J, SMISC,4*ENDDO!*****************剪力Qy************DO,J,1,LL,1*GET,QY1(J,I),ELEM, J, SMISC,2*ENDDO!*****************支座反力************GET,REACTION(1,I),NODE, 2001, RF,FZ*GET,REACTION(2,I),NODE, 2002, RF,FZ*IF,e3,GT,0.0,THEN*GET,REACTION(3,I),NODE, 2003, RF,FZ*ELSE*GET,REACTION(3,I),NODE, L(1)+1, RF,FZ*ENDIF*IF,e4,GT,0.0,THEN*GET,REACTION(4,I),NODE, 2004, RF,FZ*ELSE*GET,REACTION(4,I),NODE, L(1)+L(2)+1, RF,FZ *ENDIF*GET,REACTION(5,I),NODE, 2005, RF,FZ*GET,REACTION(6,I),NODE, 2006, RF,FZKK(I)=I*ENDDO!**************************公路I级汽车活载影响线加载效应计算*******************************! 车道宽度假定为3.75m! 车道布置:横向NN=2车道,不考虑横向折减系数;跨径小于150m,不需要考虑纵向折减。

ANSYS-简单框架问题及梁板复合计算

ANSYS-简单框架问题及梁板复合计算

01简单框架问题及梁板复合计算(ANSYS)ANSYS 9.0版本启动的时候首先出现如下图所示的对话框,其中第一页提示用户选择需要的ANSYS功能模块,用户需要根据其购买的ANSYS模块和计算的问题内容来选择。

选择功能模块选择启动对话框的第二个页面,这里ANSYS提示用户给出操作所在的文件夹以及相应的任务名称。

而后ANSYS的计算过程及结果都存放在该文件夹中,一般都以任务命作为文件名,以扩展名表示文件的类型。

例如,在本次分析中,任务名为Case01,那么ANSYS 的计算结果,一般会以Case01.rst文件的形式存放在D:\AnsysWork\Book\case01\文件夹中文件夹及任务名称以上设置好后点击“Run”按钮,就进入ANSYS的主操作界面,ANSYS操作界面主要包括以下4部分:(1)ANSYS窗口顶部菜单,提供一些常用功能开关选项;(2)ANSYS窗口顶部工具栏,提供一些常用功能件,比如打开文件、保存文件等;(3)在工具栏右侧为命令输入栏,ANSYS的所有操作都可以通过输入一定格式的命令来完成,ANSYS称其这套命令体系为APDL语言;(4)ANSYS窗口中央左侧为ANSYS的主菜单,ANSYS图形界面分析(GUI)的大部分功能都由这部分菜单完成。

主菜单中最常用的几个模块为前处理模块(Preprocessor),求解模块(Solution),通用后处理模块(General Postproc)和时程后处理模块(TimeHist Postproc);(5)ANSYS窗口中央右侧为ANSYS的显示窗口,GUI界面的各种操作和结果都在该窗口显示顶部菜单顶部工具栏命令输入栏主菜单显示窗口首先要选择分析所用的单元类型。

在本次分析中,我们将用到在土木工程中最常用的两种单元:三维梁单元Beam 188 和三维壳单元Shell 63。

一般结构中梁柱可以用梁单元模拟,而剪力墙和楼板则可以用壳单元模拟。

基于ANSYS的连续梁计算程序的二次开发

基于ANSYS的连续梁计算程序的二次开发韩雄刚【摘要】ANSYS具有强大的前后处理和求解功能,并为有限元软件的开发提供了良好的平台,通过开发,实现了在ANSYS应用程序中添加自己的连续梁有限元程序(LXLJS),并总结了用APDL和UIDL对ANSYS进行二次开发的一般规律和操作步骤,为用户在扩充ANSYS的基本功能和建立自己专用程序的同时,建立起属于自己程序的图形界面提供了有益的参考.【期刊名称】《内蒙古公路与运输》【年(卷),期】2015(000)005【总页数】3页(P36-38)【关键词】有限元;连续梁;二次开发;APDL【作者】韩雄刚【作者单位】中国市政工程华北设计研究总院有限公司,天津300070【正文语种】中文【中图分类】U448.21+51 概述科学技术进步的今天要求更多的工程技术人员具备完整的结构体系,并熟练掌握且能运用大型通用有限元程序。

当今,大型商用通用有限元程序有很多,例如:ANSYS、MIDAS、SAP2000、ADAMS、ABAQUS、NASTRAN、MARC、I-DEAS 等,其中 ANSYS功能最为强大,且简便易学,是首选的通用程序[1]。

有限元应用程序进行二次开发存在两大瓶颈,即几何模型的可视化和结果的可视化。

ANSYS拥有强大的前后处理,可以较容易的突破两大瓶颈,并为多种语言提供了二次开发的接口[2],因此利用ANSYS开发用户专用的有限元程序不仅具有高效性而且具有高可靠性,并且还具有通用性。

ANSYS标准的图形交互界面是调用和执行ANSYS命令的图形窗口,它提供各类命令的参数输入接口和控制开关,使用户在图形用户界面上进行分析变得直观和轻松。

ANSYS拥有用户界面设计语言(UIDL),它是编写和改造ANSYS图形交互界面的专用语言,主要编写和改造主菜单及对话框、拾取对话框以及系统的帮助界面设计[3]。

通过用户界面设计语言UIDL,用户可以将自己用APDL开发的专用有限元程序添加进ANSYS应用程序中,从而建立具有本专业特性的ANSYS有限元分析程序,本次开发的连续梁计算程序LXLJS针对ANSYS不太熟悉的普通技术人员。

曲线梁桥ANSYS计算命令流

!****************************************************************************** ***********************! case2:无偏载(以跨径布置30m+40m+30m,桥宽8.5为例)! 上海城市设计研究院L1+L2+L3预应力混凝土曲线连续梁桥结构分析! 两端为抗扭支座,中间支座为点铰支座! 每次要记得修改横隔梁的参数,即Mass21单元的实常数!****************************************************************************** ***********************FINI/CLE/prep7!DEFINE THE ELEMENTARY PARAMETERS*DIM,L,ARRAY,10*DIM,H,ARRAY,10*DIM,CITA,ARRAY,10!*****以下参数均可修改***************N=3 !跨数L(1)=30 !第一跨L(2)=40 !第二跨L(3)=30 !第三跨e1=1.25 !1#墩处内支座到中心线的间距e2=1.25 !1#墩处外支座到中心线的间距e3=0 !2#墩处的支座偏心距(正的表示外偏)e4=0 !3#墩处的支座偏心距e5=1.25 !4#墩处内支座到中心线的间距e6=1.25 !4#墩处外支座到中心线的间距R=10000 !曲线桥半径H0=1.0 !梁底到截面形心处的高度M=16146 !mass21单元质量J=27246.38 !mass21单元转动惯量!*************************************LL=0.0*DO,I,1,NLL=LL+L(I)CITA(I)=L(I)/R/3.1415925*180*ENDDOCITA0=LL/R/3.1415925*180LOCAL,11,1,0,0,0,0,270,0CSYS,11!DEFINE THE NODES OF BRIDGEN, 1, R, -179.9999, H0N, L(1)+1, R, -179.9999+CITA(1), H0N, L(1)+L(2)+1, R, -179.9999+CITA(1)+CITA(2), H0 N, L(1)+L(2)+L(3)+1, R, -179.9999+CITA0, H0FILL,1,L(1)+1FILL,L(1)+1,L(1)+L(2)+1FILL,L(1)+L(2)+1,L(1)+L(2)+L(3)+1!DEFINE THE REFERENCE POINT OF MAIN DECKN,2000,0,0,0!***************************************************************** !DEFINE THE NODES OF RIGID BEAM OF MAIN GIRDERN, 2001, R-e1, -179.9999, H0N, 2002, R+e2, -179.9999, H0N, 2003, R+e3, -179.9999+CITA(1), H0N, 2004, R+e4, -179.9999+CITA(1)+CITA(2), H0N, 2005, R-e5, -179.9999+CITA0, H0N, 2006, R+e6, -179.9999+CITA0, H0NROTA T,ALL!*****************************************************! 定义主梁单元材料、几何参数! 混凝土标号为C40!**************梁段截面几何特性*******************ET,1,BEAM4MP,EX , 1, 3.25E+10MP,NUXY, 1, 0.2000MP,DENS, 1, 3950.50MP,ALPX, 1, 1.00E-05R,1,4.39129,2.4428,20.7089,8.5,2.0,, !跨中梁断面RMORE ,,5.0388,,,,,!**************刚臂截面几何特性*******************! 增设抗扭或偏心支座时采用ET,3,BEAM4MP,EX , 3, 3.25E+10MP,NUXY, 3, 0.2000MP,DENS, 3, 0.0MP,ALPX, 3, 1.0E-08R,3,100,1000,1000,0.5,0.5,,RMORE ,,1000,,,,,!****************生成主梁单元**********************TYPE,1MA T,1REAL,1*DO,I,1,LL,1E,I,I+1,2000*ENDDO!*********************************************************** ! 生成主梁刚臂单元!*********************************************************** TYPE,3MA T,3REAL,3E,2001,1E,1,2002*IF,e3,GT,0.0,THENE,2003,L(1)+1*ELSENSEL,U, , ,2003*ENDIF*IF,e4,GT,0.0,THENE,2004,L(1)+L(2)+1*ELSENSEL,U, , ,2004*ENDIFE,2005,LL+1E,LL+1,2006!**************************************************! 支墩处的横隔梁采用Mass21单元来模拟!**************************************************ET,4,MASS21R,100, M ,M ,M ,J ,,,TYPE,4REAL,100E,1E,L(1)+1E,L(1)+L(2)+1E,LL+1!****施加约束条件**********D,2001,UX,,,,,UY,UZD,2002,UZ*IF,e3,GT,0.0,THEND,2003,,,,,,,UZ*ELSED,L(1)+1,,,,,,,UZ*ENDIF*IF,e4,GT,0.0,THEND,2004,,,,,,,UZ*ELSED,L(1)+L(2)+1,,,,,,,UZ*ENDIFD,2005,UX,,,,,,UZD,2006,UZ!********************************************************** ! 对桥梁桥面各节点逐点加载!********************************************************** /SOLUANTYPE,0 ! 静力分析ACEL,0,0,0K=1*DO,I,1,LL+1,1TIME,KFDELE,ALL,ALLF,I,FZ,-1000SOLVEK=K+1*ENDDO!******定义各片纵梁的竖向挠度、弯矩、扭矩、剪力的包络图******** *DIM,AMAX,ARRAY,LL+1*DIM,AMIN,ARRAY,LL+1*DIM,JZMAX,ARRAY,LL+1*DIM,JZMIN,ARRAY,LL+1*DIM,DISP1,ARRAY,LL+1,LL+1*DIM,MZ1,ARRAY,LL,LL+1*DIM,MX1,ARRAY,LL,LL+1*DIM,QY1,ARRAY,LL,LL+1*DIM,DISP1MAX,ARRAY,LL+1*DIM,DISP1MIN,ARRAY,LL+1*DIM,MZ1MAX,ARRAY,LL*DIM,MZ1MIN,ARRAY,LL*DIM,MX1MAX,ARRAY,LL*DIM,MX1MIN,ARRAY,LL*DIM,QY1MAX,ARRAY,LL*DIM,QY1MIN,ARRAY,LL*DIM,KK,ARRAY,LL+1*DIM,REACTION,ARRAY,6,LL+1*DIM,REACTIONMAX,ARRAY,6*DIM,REACTIONMIN,ARRAY,6*DO,I,1,LL+1,1/POST1SET,I!*****************竖向位移***************DO,J,1,LL+1,1*GET,DISP1(J,I),NODE,J,U,Y*ENDDO!*****************竖向弯矩Mz************DO,J,1,LL,1*GET,MZ1(J,I),ELEM, J, SMISC,6*ENDDO!*****************扭矩Mx************DO,J,1,LL,1*GET,MX1(J,I),ELEM, J, SMISC,4*ENDDO!*****************剪力Qy************DO,J,1,LL,1*GET,QY1(J,I),ELEM, J, SMISC,2*ENDDO!*****************支座反力************GET,REACTION(1,I),NODE, 2001, RF,FZ*GET,REACTION(2,I),NODE, 2002, RF,FZ*IF,e3,GT,0.0,THEN*GET,REACTION(3,I),NODE, 2003, RF,FZ*ELSE*GET,REACTION(3,I),NODE, L(1)+1, RF,FZ*ENDIF*IF,e4,GT,0.0,THEN*GET,REACTION(4,I),NODE, 2004, RF,FZ*ELSE*GET,REACTION(4,I),NODE, L(1)+L(2)+1, RF,FZ *ENDIF*GET,REACTION(5,I),NODE, 2005, RF,FZ*GET,REACTION(6,I),NODE, 2006, RF,FZKK(I)=I*ENDDO!**************************公路I级汽车活载影响线加载效应计算*******************************! 车道宽度假定为3.75m! 车道布置:横向NN=2车道,不考虑横向折减系数;跨径小于150m,不需要考虑纵向折减。

ANSYS梁体组合连接计算方法的讨论

ANSYS梁体组合连接计算方法的讨论在有限元分析中,常常需要采用桿梁、板壳、实体单元之间的组合建模以实现对实际工程结构的模拟,这就需要考虑不同单元间的连接。

文章讨论了梁体连接中cerig命令、ceintf命令以及MPC算法的差异,并通过相关算例进行了对比,总结了各种方法的优缺点及适用范围。

标签:ANSYS;梁单元;壳单元;实体单元;单元连接1 概述有限元分析中,实体单元在理论上可以用于各个结构的模拟。

而实际工程中的结构是十分复杂的,若都采用实体单元进行模拟,首先是建模困难,效率低下;其次是划分网格后节点众多,造成求解代价巨大,并且有些结构,如板壳结构、杆梁结构,采用实体单元分析的精度并不理想。

因此,建模分析时常常是采用“杆梁壳体”组合模拟。

因为自由度不协调的问题,采用ANSYS分析时,需要处理各个单元之间的连接。

而壳体、梁体、壳梁的组合是经常要用到的,比如桥梁工程中墩台与桥面板之间的连接,根据分析精度的不同可以选择梁体或壳梁组合。

在梁体的组合建模中,梁体之间只要有公共节点就可以连接,不需要约束方程。

而梁体之间有公共节点的连接是铰接,不是刚接。

要实现其他形式的连接,则必须通过耦合自由度来实现连接,或通过MPC算法实现连接。

2 ANSYS中的实现方式2.1 耦合与约束方程对于不同单元之间的连接问题,常用的办法是耦合自由度或写约束方程。

耦合自由度是指:使两个或多个自由度“相等”,耦合集中包含一个主自由度和多个从自由度,只有主自由度保存在矩阵中,而其他自由度则删除,所以耦合自由度实际上是降低了平衡方程的个数。

而约束方程就是把某个节点的自由度与其他一个或多个节点的自由度通过“方程”联系起来。

约束方程可以代替自由度耦合,并且比自由度耦合更加通用。

Cerig与Ceintf命令都是通过自动生成约束方程这种方式实现连接。

2.2 MPC多点接触算法Multi-Point Constraints即多点约束方程。

它定义了一种节点自由度之间的耦合关系,使用内部生成的约束方程在接触面上保证变形协调,以一个节点的某几个自由度为标准值,将其它节点的指定自由度与这个标准值建立关系。

ANSYS四跨连续梁的内力计算教程

ANSYS四跨连续梁的内力计算四跨连续梁模型图如下所示,各个杆件抗弯刚度EI相同,利用平面梁单元分析它的变形和内力1.结构力学分析利用结构力学方法可以求出这个连续梁的剪力图和弯矩图如下这里只给出了梁的弯曲刚度相同条件,没有指定梁截面的几何参数和材料的力学性质。

从结构力学分析的条件上看,这些条件对于确定梁的内力已经足够,但是对于梁的变形分析和应力计算,还需要补充材料的力学参数和截面几何参数。

所以以下分析中,假定梁的截面面积位0.3m2,抗弯惯性矩为0.003m4,截面高度为0.1m;材料的弹性模量为1000kN/m2,泊松比为0.3。

补充这些参数对于梁的内力没有影响,但是对于梁的变形和应力是有影响的。

2.用节点和单元的直接建模求解按照前面模型示意图布置节点和单元,在图示坐标系里定位节点的坐标和单元连接信息,以与荷载作用情况和位移约束。

由于第二跨中间有两个集中力,所以在集中力位置设置两个节点。

这样,就可以将这两个集中力直接处理成节点荷载。

对于平面梁单元的节点只需输入平面上的两个坐标值,所以这里只输入节点的x坐标和y坐标。

(1)指定为结构分析运行主菜单中preference偏好设定命令,然后在对话框中,指定分析模块为structural结构分析,然后单击ok按钮(2)新建单元类型运行主菜单preprocessor—element type—add/edit/delete命令,接着在对话框中单击add 按钮新建单元类型(3)定义单元类型先选择单元为beam,接着选2d elastic 3,然后单击ok按钮确定,完成单元类型的选择(4)关闭单元类型的对话框回到单元类型对话框,已经新建了beam3的单元,单击对话框close按钮关闭对话框(5)定义实力常量运行主菜单preprocessor—real constants—add/edit/delete命令,接着在对话框中单击add 按钮新建实力常量接着选择定义单元beam3的实力常量,选择后单击ok按钮,然后输入该单元的截面积为0.3,抗弯惯性矩为0.003m4,截面高度为0.1m,输入后单击ok按钮(6)设置材料属性运行主菜单preprocessor—material props—material models材料属性命令,选择材料属性命令后,系统会显示材料属性设置对话框(7)设置杨氏弹性模量与泊松比在材料属性设置对话框右侧依序选择两次structural—linear—elastic—isotropic 完成选择命令后,接着在对话框中EX杨氏弹性模量输入1e6,PRXY泊松比输入0.3,在数值输入后,单击ok按钮完成设置(8)关闭材料属性设置对话框完成材料属性的设置后,可在对话框右侧上方单击按钮,关闭材料属性设置(9)生成节点运行主菜单preprocessor—modeling—create—nodes—in active cs生成节点于目前坐标系统命令。

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