首页> 外文期刊>Journal of Architectural Engineering Technology >Parametric Study on Analysis and Design of Permanently Anchored Secant Pile Wall for Earth Quake Loading
【24h】

Parametric Study on Analysis and Design of Permanently Anchored Secant Pile Wall for Earth Quake Loading

机译:地震荷载作用下永久锚固正割桩墙的分析与设计参数研究。

获取原文
       

摘要

Due to space limitations in urban areas, deep excavation in to the ground has become a common practice worldwide. Deep excavations are supported by conventional retaining walls: sheet pile walls, braced walls, diaphragm walls and secant pile walls. An advantage of secant pile wall compared with other excavation supporting systems is that they are the most economical methods of creating an effective water control barriers for building structural walls. The analysis of these deep excavations requires considerations of; nonlinear, dynamic and involves consideration of soil parameters, deformation, interaction of soil and retaining configuration. Thus, in order to accurately describe the behaviour of the anchored secant pile for earthquake loading, 3D finite element simulation was applied. The study considering earth pressure, plastic analysis, and soil deformation was carried out. The analysis indicated that for 20 m excavation step in fourth stage, incremental lateral displacement was 55.2 mm and total displacement was 110.4 mm. The analysis indicated that the deeper the foundation, the larger the deformation. The real accelerogram of Loma Prieta earthquake at Del Valle Dam Station with moment magnitude 7.1 occurring at epicentral distance 66 (18 Oct, 1989) was used in the study. In order to accurately study the response of the anchored secant pile to earthquake loading; it is suggested to carry out the relevant tests to determine the right stiffness parameters. Further investigation on parameters (density and shear modulus) and other conditions that affect seismic analysis.
机译:由于城市地区的空间限制,在地下进行深挖已成为世界范围的普遍做法。常规的挡土墙可以支撑深基坑:板桩墙,支撑墙,隔板墙和割线桩墙。与其他挖掘支撑系统相比,割线桩墙的一个优点是,它们是创建用于建筑结构墙的有效水控制屏障的最经济的方法。对这些深基坑的分析需要考虑以下因素:非线性,动态,涉及土壤参数,变形,土壤相互作用和保持构造的考虑。因此,为了精确描述地震荷载作用下的割线桩的行为,应用了3D有限元模拟。进行了考虑土压力,塑性分析和土壤变形的研究。分析表明,在第四阶段的20 m开挖步骤中,侧向位移增量为55.2 mm,总位移为110.4 mm。分析表明,地基越深,变形越大。这项研究使用的是德尔瓦勒大坝站Loma Prieta地震的真实加速度图,其震级为7.1,发生在震中距离66(1989年10月18日)。为了准确地研究割线桩对地震荷载的响应;建议进行相关测试以确定合适的刚度参数。进一步研究影响地震分析的参数(密度和剪切模量)和其他条件。

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