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Numerical Simulation of Steel Sheet Pile Support Structures in Foundation Pit Excavation

机译:基坑开挖中钢板桩支护结构的数值模拟

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U-section steel sheet piles are widely used as support structures in bridge foundation pit excavation. Because of the reduced modulus action (RMA) effect of U-section steel sheet piles, it is difficult to balance structural safety and construction cost in engineering. In this paper, a case study of a foundation pit supported by U-section steel sheet piles in the middle and lower reaches of the Yangtze River was carried out. A three-dimensional FEM of the support structure was established and the RMA parameter analysis was conducted. According to the measured data, the RMA value was identified. Based on the RMA value, the support structure of the subsequent foundation pit was optimized and the deformation of the pile head was monitored during the excavation process. The measured deformation was in good agreement with the predicted value, verifying the feasibility of the inferred RMA value. Finally, to solve the uncertainty problem of the U-section steel sheet pile RMA in general situations, an optimization strategy for the design of the U-section steel sheet pile support structure was proposed.
机译:U型截面钢板桩被广泛用作桥梁基坑开挖的支撑结构。由于U型截面钢板桩的模量作用(RMA)降低,因此很难在工程中平衡结构安全性和施工成本。本文以长江中下游U型截面钢板桩为支撑的基坑为例。建立了支撑结构的三维有限元,并进行了RMA参数分析。根据测得的数据,确定RMA值。基于RMA值,优化了后续基坑的支撑结构,并在开挖过程中监测桩头的变形。测得的变形与预测值非常吻合,证明了推断RMA值的可行性。最后,针对一般情况下U型钢板桩RMA的不确定性问题,提出了U型钢板桩支护结构设计的优化策略。

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