...
首页> 外文期刊>Environmental geology and water sciences >Hydraulic Barrier Function Of The Underground Continuous Concrete Wall In The Pit Of Subway Station And Its Optimization
【24h】

Hydraulic Barrier Function Of The Underground Continuous Concrete Wall In The Pit Of Subway Station And Its Optimization

机译:地铁车站地下连续混凝土墙的水力屏障功能及其优化。

获取原文
获取原文并翻译 | 示例

摘要

Subway traffic is now being developed in China on a large scale and the planning subway stations are often located in dense district with tall building. The dewatering of confined aquifer may cause ground settlement, the cracking, deformation and tilting of the building, and even collapse. Combing with the dewatering project of environment protection of the pit of Yishan Road station of Shanghai subway No. 9, through the inversion of seepage parameters based on the field pumping test, the hydraulic barrier function of the underground continuous wall is simulated. The result indicates that with the reduction of the exposed length of the filter tube and the increase of that enclosed, the drawdown of the confined aquifer decreases. Especially with the increase of the enclosed length of the filter tube, the drawdown outside the pit can be controlled effectively. According to the result of the numerical simulation, the design of the continuous concrete wall of the pit for Shanghai Subway No. 9 is altered and the depth of the continuous concrete wall of the standing part and that in the end well are increased to 61 and 62 m, respectively. The monitored result of the equal drawdown pumping test indicates that the drawdown outside the pit with a distancernof 1-6 m to the wall is less than 2 m; It means that there is nearly no influence on the environment around the pit during dewatering.
机译:中国目前正在大规模发展地铁交通,而规划中的地铁站通常位于人口稠密的高层建筑区。承压含水层的脱水可能导致地面沉降,建筑物的破裂,变形和倾斜,甚至倒塌。结合上海地铁9号站依山路站车站基坑的环保脱水工程,通过基于现场抽水试验的渗流参数反演,模拟了地下连续墙的水力屏障功能。结果表明,随着滤管裸露长度的减少和封闭管的增加,承压含水层的水位下降。特别是随着过滤管封闭长度的增加,可以有效地控制凹坑外部的压降。根据数值模拟结果,改变了上海地铁9号井坑的连续混凝土墙的设计,并将直立部分和末端井的连续混凝土墙的深度增加到61和。分别为62 m。等压抽水试验的监测结果表明,坑外的压降距墙的距离为1-6 m,小于2 m。这意味着在脱水过程中对矿井周围的环境几乎没有影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号