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Experimental study of the progressive collapse mechanism of excavations retained by cantilever piles

机译:悬臂桩保留的累进塌陷机制的实验研究

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摘要

An increasing number of catastrophic progressive collapses of deep excavations have occurred throughout the world. However, the research on progressive collapse mechanisms is limited. In this paper, two categories of model tests were conducted to investigate the mechanism of partial collapse (sudden failures of certain retaining piles) and progressive collapse. The model test results show that partial collapse can cause a sudden increase in the bending moments of adjacent piles via an arching effect. The load-transfer coefficients are defined to be equal to the peak increase ratios of the maximum bending moments in adjacent piles (peak moments caused by collapse over the values before the collapse). When the maximum load-transfer coefficient is larger than the bearing capacity safety factor of the piles, the partial failure will lead to progressive collapse. The influential factors of the progressive collapse mechanism, such as the partial collapse extent, excavation depth, and capping beam, were also investigated. During progressive collapse, the previous failed pile could cause new stress arching; simultaneously, the soil behind certain nearest intact piles could become loosened and destroy the arch springing of the stress arching, causing the progressive collapse to cease gradually.
机译:世界各地都发生了越来越多的灾难性逐步崩溃。然而,渐进崩溃机制的研究有限。在本文中,进行了两类模型试验,以研究部分崩溃(某些留挡桩的突然故障)和逐渐崩溃的机制。模型测试结果表明,部分坍塌可能通过拱形效果导致相邻桩的弯曲时刻突然增加。负载转移系数被定义为等于相邻桩中最大弯曲时刻的峰值增加比(由崩溃前的值坍塌引起的峰值矩)。当最大负载转移系数大于桩的承载力安全系数时,部分故障将导致逐渐崩溃。还研究了渐进塌陷机制的影响因素,例如部分塌陷程度,挖掘深度和覆盖光束。在逐步崩溃期间,之前的失败桩可能导致新的压力拱起;同时,某些最接近的完整桩背后的土壤可能会松开并破坏压力拱起的弓弹性,导致逐渐崩溃逐渐停止。

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