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Numerical analysis of inverted T-type wall under seismic loading

机译:地震作用下倒T型墙的数值分析

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The seismic responses of an inverted T-type wall were examined using three-dimensional numerical analyses of a time domain with explicit time integration. The numerical analysis model was modeled and verified using dynamic centrifuge tests at a prototype scale. The analytical results corresponded with the dynamic centrifuge test measurements in terms of the velocity. The generation mechanism of the dynamic earth pressure on an inverted T-type wall was reviewed using video clips constructed from the numerical analysis results. The dynamic earth pressure was primarily generated by changes in the lateral earth pressure coefficient as a result of the relative displacement of the wall stem and the settlement of the active soil wedge behind the wall. The bending moment of the wall stem increased during shaking and remained after shaking. The maximum and final distributions of the bending moments did not follow the calculation results based on the Mononobe Okabe equation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:使用时域的三维数值分析和明确的时间积分,研究了倒T型墙的地震反应。使用原型机规模的动态离心测试对数值分析模型进行建模和验证。在速度方面,分析结果与动态离心机测试结果相对应。利用从数值分析结果构建的视频片段,回顾了倒T型墙上动态土压力的产生机理。动土压力主要是由于壁杆的相对位移和墙后的活动土楔沉降而引起的侧向土压力系数的变化而产生的。壁杆的弯曲力矩在振动过程中增加,并在振动后保持不变。弯矩的最大和最终分布不遵循基于Mononobe Okabe方程的计算结果。 (C)2015 Elsevier Ltd.保留所有权利。

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