文章摘要
张卫兵, 张刚柱, 韩自刚, 王 乐.基于HS-Small本构模型的银川地区深基坑开挖-降水过程数值分析Journal of Water Resources and Water Engineering[J].,2020,31(2):211-218
基于HS-Small本构模型的银川地区深基坑开挖-降水过程数值分析
Numerical analysis of the excavation-dewatering process of a deep foundation pit in Yinchuan area based on HS-Small constitutive model
  
DOI:10.11705/j.issn.1672-643X.2020.02.32
中文关键词: 深基坑  数值分析  HS-Small模型  参数  锚钉支护
英文关键词: deep foundation pit  numerical analysis  HS-Small model  parameter  combined support of anchors and nails
基金项目:宁夏高等学校一流学科项目(NXYLXK2017A03); 宁夏回族自治区重点研发计划项目(2018BEE03005); 宁夏自然科学基金项目(NZ17013)
Author NameAffiliation
ZHANG Weibing1,2, ZHANG Gangzhu1, HAN Zigang3, WANG Le3 (1.宁夏大学 土木与水利工程学院 宁夏 银川 750021 2.旱区现代农业水资源高效利用教育部工程研究中心宁夏 银川 750021 3.宁夏建筑设计研究院有限公司 宁夏 银川 750021) 
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中文摘要:
      针对银川地区缺乏数值计算深基坑稳定性和锚杆受力等相关研究,运用midas GTS NX软件中HS-Small本构模型,对采取锚钉支护的宁夏自治区银川某地下车库深基坑开挖-地下水位下降过程进行了数值分析。结果表明:随着基坑的开挖,基坑边坡的变形量逐渐增大,最终位移最大值出现在基坑顶部阳角处;锚杆轴力随开挖深度的增加而加大,控制变形能力与所处位置有关,下部锚杆控制变形能力优于上部锚杆,锚钉联合支护形式和土钉墙支护形式界面处变形差异较大;随着开挖和持续降水,周边建筑物沉降缓慢增加且最终沉降小于警戒值;锚钉支护中土钉轴力表现为轻微S型曲线,最大值约位于沿土钉长度3/4位置处;通过模拟结果与实测数据进行了对比分析,两者吻合较好,反分析获得银川地区典型土层HS-Small模型的参数取值,可作为银川地区类似深基坑工程数值模拟的依据。
英文摘要:
      Aimed at the lack of numerical calculation of deep foundation pit stability and anchor rod stress in Yinchuan area, the excavation-dewatering process of a deep foundation pit of an underground garage in Yinchuan, Ningxia Autonomous Region, which is reinforced by anchors and nails, was numerically analyzed using the HS-Small constitutive model of the Midas GTS NX software. The results showed that the deformation of the foundation pit slope increased gradually with the excavation, and the maximum displacement appeared at the top external corner of the foundation pit. The axial force of the anchor rods increased with the increase of excavation depth, and the ability of controlling deformation was related to the positioning of the anchors. The ability of controlling deformation of the lower part of the anchor rods was better than that of the upper part. There was a large difference in deformation between the support of soil nails and the combined support of anchors and nails. The settlement of surrounding buildings increased slowly and the final settlement was less than the warning value with the excavation and continuous dewatering. The axial force of soil nails in the combined support showed a slight S-shaped curve, and the maximum value was located at about 3/4 of the soil nail length. According to the comparion analysis of the simulation results and the measured data, the results are in good agreement. The parameters of HS-Small model of typical soil layer in Yinchuan area obtained by back analysis can be used for the numerical simulation of similar deep foundation pit engineering in Yinchuan area.
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