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1)  collocation of pile groups
桩群布置
2)  embedded pile group
埋置群桩
3)  arrangement of pile
桩布置
4)  pile layout
桩位布置
1.
Combined with practical work,from pile layout,loading case,internal force calculation,earth-retaining and slope protection,the design of excavation stakes and other aspects the deep foundation design is introduced as well as construction measures.
结合工程实例,从桩位布置、作用荷载、内力计算、挡土护坡挖孔桩的设计多方面介绍了深基础的设计,提出了基础构造措施,阐明了带地下室的深基础采用桩墙合一、自支护逆作法施工的诸多优点。
5)  arrangement of pile foundation
桩基布置
1.
Taking the platform of a gravity wharf as an example,and using the principle of triangle core of gravity,this paper analyzes the influence of the arrangement of pile foundation on the horizontal bearing capacity of high-level platform.
以某重件码头起重机承台为例,利用三角形重心的原理,分析桩基布置对高桩承台承受水平荷载能力的影响,对高桩码头、墩台设计有参考价值。
6)  pile allocation by taking-out
抽桩布置
补充资料:ANSYS SOLID65环向布置钢筋的例子

 ANSYS SOLID65环向布置钢筋的例子
! 一个管道,环向配筋率为1%,纵向配筋率为0.5%,径向配筋率为0.1%
! 作者: 陆新征 清华大学土木系
!
FINISH
/CLEAR


/PREP7
!*
! 单元属性
ET,1,SOLID65
!*
KEYOPT,1,1,0
KEYOPT,1,5,0
KEYOPT,1,6,0
KEYOPT,1,7,1
!*
!实参数1:不同方向配筋
R,1,2,.001, , ,2, .01,
RMORE, 90, ,2,.005 ,90 ,90 ,


!材料属性
!混凝土基本材料属性
MPTEMP,,,,,,,,
MPTEMP,1,0
MPDATA,EX,1,,30E2
MPDATA,PRXY,1,,.2
!屈服准则
TB,MISO,1,1,5,
TBTEMP,0
TBPT,,0.0005,15
TBPT,,0.001,21
TBPT,,0.0015,24
TBPT,,0.002,27
TBPT,,0.003,24
!破坏准则
TB,CONC,1,1,9,
TBTEMP,0
TBDATA,,.5,.9,3,30,,
TBDATA,,,,1,,,
MPTEMP,,,,,,,,
MPTEMP,1,0
!钢材基本属性
MPDATA,EX,2,,200E3
MPDATA,PRXY,2,,.27
!屈服准则
TB,BISO,2,1,2,
TBTEMP,0
TBDATA,,310,2E3,,,,


! 管道内径和外径
CYL4,0,0,3000, , , ,10000
CYL4,0,0,2000, , , ,10000
VSBV, 1, 2


! 定义局部柱坐标
CSWPLA,11,1,1,1,
KWPAVE, 11
WPRO,,-90.000000,
VSBW, 3
WPCSYS,-1,0
KWPAVE, 1
WPRO,,,-90.000000
VSBW,ALL


ESIZE,500,0,
! 注意:设定单元局部坐标
VATT, 1, 1, 1, 11
!*
VSWEEP,ALL
/DEVICE,VECTOR,1
/ESHAPE,1.0
/REPLO
! 注意:红色代表最大配筋方向,绿色代表其次,蓝色表示最小配筋方向

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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