|本期目录/Table of Contents|

[1]张波,陈晓东.闭合型地下连续墙基础竖向承载性能数值模拟[J].地球科学与环境学报,2010,32(03):311-315.
 ZHANG Bo,CHEN Xiao-dong.Numerical Simulation of Vertical Bearing Capacity of Closed Underground Diaphragm Wall[J].Journal of Earth Sciences and Environment,2010,32(03):311-315.
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闭合型地下连续墙基础竖向承载性能数值模拟(PDF)
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《地球科学与环境学报》[ISSN:1672-6561/CN:61-1423/P]

卷:
第32卷
期数:
2010年第03期
页码:
311-315
栏目:
地质工程
出版日期:
2010-09-20

文章信息/Info

Title:
Numerical Simulation of Vertical Bearing Capacity of Closed Underground Diaphragm Wall
文章编号:
1672-6561(2010)03-0311-05
作者:
张波1陈晓东2
(1.甘肃水文地质工程地质勘察院,甘肃 兰州 730020; 2.中交公路规划设计院有限公司,北京 100088)
Author(s):
ZHANG Bo1 CHEN Xiao-dong2
(1.Gansu Investigation Institute of Hydrogeology and Engineering Geology, Lanzhou 730020, Gansu, China; 2.CCCC Highway Consultants Company Limited, Beijing 100088, China)
关键词:
地下连续墙黄土竖向承载力数值模拟FLAC-3D
Keywords:
underground diaphragm wall loess vertical bearing capacity numerical simulation FLAC-3D
分类号:
P642;TU43
DOI:
-
文献标志码:
A
摘要:
基于室内模型试验,就闭合型与单片地下连续墙基础在竖向承载性能上的差异进行了对比分析,并采用FLAC-3D软件进行数值分析来丰富室内模型试验,探讨了土体变形模量、密度、内聚力以及内摩擦角对闭合型地下连续墙竖向承载力的影响。结果表明:闭合型地下连续墙基础外侧摩阻力的发挥过程与单片地下连续墙基础大致相同,但由于土芯的存在,其内侧摩擦阻力发挥机理更复杂;闭合型与单片地下连续墙基础均可视为端承摩擦型基础;随着墙周土变形模量的增加,闭合型地下连续墙基础竖向位移显著减少,墙体轴力也减少;密度对闭合型地下连续墙基础沉降的影响不显著;内聚力对侧摩擦阻力的影响程度受地下连续墙和土体之间相对位移量的控制;只有闭合型地下连续墙基础的沉降量超过20mm时,土体内摩擦角才对基础的竖向承载力有较大影响。
Abstract:
Based on the indoor test of model, the differences of vertical bearing capacity of closed and single underground diaphragm walls were discussed, the software FLAC-3D was used in numerical simulation in order to supply the indoor test of model, the influences of deformation modulus, density, cohesion and internal frictional angle on vertical bearing capacity of closed underground diaphragm walls were studied. The result showed that the mechanism of outside friction resistance in closed and single underground diaphragm walls were mostly the same, but the mechanism of inside friction resistance in closed underground diaphragm wall was more complex because of the existence of core; closed and single underground diaphragm walls could be considered as end support friction type; vertical displacement and wall axial force deceased significantly with the increase of deformation modulus in soil around the wall; the influence of density on sedimentation of closed underground diaphragm wall was not significant; effect of cohesion on lateral friction drag was controlled by relative displacement between the soils of underground diaphragm wall; internal frictional angle had considerable influence on the vertical bearing capacity of underground diaphragm wall only when the sedimentation of underground diaphragm wall was more than 20 mm.

参考文献/References:

[1] 丛蔼森.地下连续墙的设计施工与运用[M].北京:中国水利水电出版社,2001.
[2] 李 涛.铁路桥梁连续墙挖井基础设计方法的试验研究[J].中国铁道科学,1997,18(2):46-53.
[3] 于书翰.黄土地区拱桥桥台人工开挖地下连续墙基础[J].西安公路交通大学学报,2000,20(4):32-35.
[4] 中交公路规划设计院有限公司.黄土地区大跨度桥梁地下连续墙和箱型基础的应用研究[R].北京:中交公路规划设计院有限公司,2007.
[5] 周建军,饶思礼,张有光,等.虎门大桥西锚碇大型混合基础的设计与施工[J].桥梁建设,1995(2):44-47.
[6] 郭慧光,孙 旻,徐 伟.地墙“巨无霸”——武汉阳逻长江公路大桥45 m埋深的南锚碇圆形地下连续墙施工及受力特性分析[J].建筑施工,2004,26(3):188-190.
[7] 常 红,郑 越.竖向承载地下连续墙的沉降计算[J].中国公路学报,2003,16(3):74-77.
[8] 傅德明,王庆国,夏明耀.地下连续墙垂直承载力现场试验研究[J].地下工程与隧道,1997(2):24-31.
[9] 常 红,夏明耀,傅德明.地下连续墙垂直承载力室内模拟试验研究[J].同济大学学报:自然科学版,1998,26(3):279-283.
[10] 李 农.地下连续墙垂直承载力试验研究[D].上海:同济大学,1993.
[11] 周生华.地下连续墙垂直承载机理试验研究[D].上海:同济大学,1991.
[12] 王卫东.承重地下连续墙与高层建筑桩箱基础及地基共同作用的理论和实测研究[D].上海:同济大学,1996.
[13] 刘 波,韩彦辉.FLAC原理、实例与应用指南[M].北京:人民交通出版社,2005.
[14] 杨治国,侯恩科,李琰庆.FLAC-3D与理正软件在基坑支护设计中的应用[J].西安科技大学学报,2007,27(2):224-227.
[14] 殷宗泽,朱 泓,许国华.土与结构材料接触面的变形及其数学模拟[J].岩土工程学报,1994,16(3):14-22.
[16] 朱 泓,殷宗泽.土与结构材料接触面性能研究综述[J].河海科技进展,1994,14(4):1-8.
[17] 机械工业勘察设计研究院.黄土地区大跨度桥梁地下连续墙和箱型基础的应用研究河津—临猗一级公路K23+385天桥湿陷性黄土的试验研究报告[R].西安:机械工业勘察设计研究院,2005.
[18] 李 晋,谢永利,冯忠居.土体参数对大直径空心桩承载性状影响的仿真分析[J].工程地质学报,2005,13(1):129-134.

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备注/Memo

备注/Memo:
收稿日期:2009-11-20
基金项目: 交通部国家西部交通建设项目(200331849457)
作者简介: 张 波(1968-),男,河南荥阳人,工程师,从事水文地质与工程地质勘察研究。E-mail:zhangbo192002@yahoo.com.cn
更新日期/Last Update: 2010-09-20