圬工与加筋土组合式挡墙数值模拟

张兴亚,徐超,贾斌,任非凡,陈建峰

长江科学院院报 ›› 2017, Vol. 34 ›› Issue (3) : 100-105.

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长江科学院院报 ›› 2017, Vol. 34 ›› Issue (3) : 100-105. DOI: 10.11988/ckyyb.20161203
岩土工程

圬工与加筋土组合式挡墙数值模拟

  • 张兴亚a,徐超a,b,贾斌a,任非凡a,陈建峰a,b
作者信息 +

Numerical Simulation of Composite Structure of Masonry and Reinforced Soil Retaining Walls

  • ZHANG Xing-ya1,XU Chao1,2,JIA Bin1,REN Fei-fan1,CHEN Jian-feng1,2
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文章历史 +

摘要

基于圬工与加筋土组合式挡墙的土工离心模型试验结果,建立了ABAQUS数值模型,从而进一步研究了加筋间距和筋材模量对这种结构变形特性及内部土压力分布规律的影响。结果表明:在本文所考虑的参数情况下,从控制挡墙变形的角度来看,密间距加筋效果好于疏间距加筋,高模量筋材效果好于低模量筋材;由于下部圬工挡墙填土区域土拱效应的存在,使得上部加筋土挡墙的土压力分布有别于常规加筋土挡墙。在上部加筋土挡墙具有足够高度的情况下,可将圬工挡墙视为加筋土挡墙的稳固地基;组合式挡墙的变形主要发生在施工期,因此应加强施工质量控制。

Abstract

According to centrifuge test results on the composite structure of masonry and reinforced soil retaining walls,numerical models were built by ABAQUS to study the influence of reinforcement spacing and modulus on the deformation characteristics and the soil pressure distribution of this composite structure. It is found that small reinforcement spacing and larger reinforcement modulus have better reinforcement effect in controlling the deformation of retaining walls considering the variation range of parameters in this research. Due to the soil arch effect in the filling zone of masonry retaining wall,the soil pressure distribution in the upper part of reinforced retaining walls is different from that of conventional walls,and the masonry retaining wall can be regarded as a solid foundation as long as reinforced retaining wall is high enough. Moreover, the deformation of this composite structure mainly occurs in the construction period,so enough attention should be paid to controlling the construction quality.

关键词

道路工程 / 圬工与加筋土组合挡墙 / ABAQUS数值模拟 / 变形特性 / 土压力分布 / 离心模型试验

Key words

road engineering / composite structure of masonry and reinforced soil retaining walls / numerical simulation by ABAQUS / deformation characteristics / soil pressure distribution / centrifuge model test

引用本文

导出引用
张兴亚,徐超,贾斌,任非凡,陈建峰. 圬工与加筋土组合式挡墙数值模拟[J]. 长江科学院院报. 2017, 34(3): 100-105 https://doi.org/10.11988/ckyyb.20161203
ZHANG Xing-ya,XU Chao,JIA Bin,REN Fei-fan,CHEN Jian-feng. Numerical Simulation of Composite Structure of Masonry and Reinforced Soil Retaining Walls[J]. Journal of Changjiang River Scientific Research Institute. 2017, 34(3): 100-105 https://doi.org/10.11988/ckyyb.20161203
中图分类号: U414   

参考文献

[1] 章为民,赖忠中,徐光明. 加筋土挡墙离心模型试验研究[J]. 土木工程学报,2000,33(3): 84-91.
[2] 陈建峰,顾建伟,石振明,等. 软土地基加筋土挡墙现场试验研究[J].岩石力学与工程学报,2011,30(增1): 3370-3375.
[3] 陈建峰,柳军修,石振明. 软土地基加筋土挡墙数值模拟及稳定性探讨[J].岩石力学与工程学报,2012,31(9): 1928-1935.
[4] 周 健,谢鑫波,姜 炯,等. 包裹式加筋土挡墙的变形特性及影响因素研究[J].岩石力学与工程学报,2015,34(1): 148-154.
[5] 栾茂田,李敬峰,肖成志,等. 土工格栅加筋土挡墙工作性能的非线性有限元数值分析[J].岩石力学与工程学报,2005,24(14): 2428-2433.
[6] 杨广庆,吕 鹏,张保俭,等. 整体面板式土工格栅加筋土挡墙现场试验研究[J].岩石力学与工程学报,2007, 26(10): 2077-2083.
[7] 杨广庆,吕 鹏,庞 巍,等. 返包式土工格栅加筋土高挡墙现场试验研究[J].岩土力学,2008,29(2): 517-522.
[8] GB/T 50290—2014,土工合成材料应用技术规范[S]. 北京: 中国计划出版社,2014.
[9] 朱海龙,刘一通,邢义川,等. 加筋土挡墙破坏形式的离心机模型试验研究[J]. 长江科学院院报,2014,31(3): 58-64.
[10]周世良,何光春,汪承志,等. 台阶式加筋土挡墙模型试验研究[J] 岩土工程学报,2007,29(1): 152-156.
[11]徐 超,贾 斌,罗玉珊,等. 圬工与加筋土组合式挡墙离心机模型试验[J]. 同济大学学报(自然科学版), 2015, 43(3): 379-385.
[12]廖公云,黄晓明. ABAQUS有限元软件在道路工程中的应用[M].南京: 东南大学出版社,2008.
[13]吕 鹏,汤劲松,刘 杰,等. 土工格栅加筋土挡墙土压力测试与有限元分析[J]. 长江科学院院报,2014,31(3): 92-95.
[14]徐 超,贾 斌,罗玉珊.间接加筋作用及加筋土挡墙离心模型试验验证[J].水文地质工程地质,2015,42(2): 77-82.
[15]贾 斌.圬工与加筋土组合式挡墙工作机理研究[D]. 上海:同济大学,2014.
[16]莫介臻,何春光,汪承志,等. 台阶式格栅加筋挡墙现场试验及数值分析[J]. 土木工程学报,2008,41(5): 52-58.
[17]包承纲,汪明远,丁金华. 格栅加筋土工作机理的试验研究[J].长江科学院院报,2013,30(1): 34-41.
[18]包承纲. 土工合成材料界面特性的研究和试验验证[J].岩石力学与工程学报,2006,25(9): 1735-1744.

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