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Seismic simulation of liquefaction-induced uplift behavior of a hollow cylinder structure buried in shallow ground

机译:浅埋地下空心圆柱体液化引起的抬升特性的地震模拟

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When designing buried structures using a performance-based framework, it is important to estimate their uplift displacement. A simplified method is proposed for predicting the uplift displacement of a hollow cylinder structure buried in shallow backfill based on the equilibrium of vertical forces acting on the structure during earthquakes. However, this method only provides the maximum value, which frequently is overestimated in practical applications. To offset this limitation, first, the uplift behavior of buried hollow cylinder structures subjected to strong earthquake motions was simulated. Then, two-dimensional effective stress analyses based on the multiple shear mechanism for soil were conducted, and the results were compared with the centrifuge test data. The soil parameters were evaluated based on laboratory test results. The seismic response data from 20 g centrifuge tests were analyzed, and the results were generally consistent with the results of centrifuge model tests. In particular, the effective stress model showed a reasonable ability to reproduce the varying degrees of uplift displacement depending on the geotechnical conditions of trench soils adjacent to the hollow cylinder structures buried in shallow ground. (C) 2014 Elsevier Ltd. All rights reserved.
机译:当使用基于性能的框架设计地下结构时,重要的是估计其上扬位移。提出了一种简化的方法,该方法基于地震过程中作用在结构上的垂直力的平衡来预测埋在浅层回填中的空心圆柱结构的上移位移。但是,此方法仅提供最大值,在实际应用中经常高估该最大值。为了弥补这一局限性,首先,模拟了承受强烈地震运动的埋入式空心圆柱结构的抬升行为。然后,基于土壤的多重剪切机理进行了二维有效应力分析,并将结果与​​离心试验数据进行了比较。根据实验室测试结果评估土壤参数。分析了20 g离心机测试的地震响应数据,其结果与离心机模型测试的结果基本一致。特别是,有效应力模型显示出合理的能力,能够根据埋在浅埋地下中空圆柱结构附近的沟渠土的岩土条件,再现不同程度的隆起位移。 (C)2014 Elsevier Ltd.保留所有权利。

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