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A NUMERICAL MODEL FOR EPS GEOFOAM SEISMIC BUFFERS

机译:EPS Geofoam地震缓冲器的数值模型

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Based on an explicit time-marching finite difference approach, a multiple horizontal layer model is proposed to compute the compression-load-time response of EPS geofoam seismic buffers placed against rigid walls to attenuate earthquake-induced dynamic loads. The seismic buffer is modeled as a linear elastic material. The soil wedge is divided into a number of horizontal slices. The boundaries of each horizontal slice are connected by a series of stress-dependent linear springs. The distribution and magnitude of compressive displacement and load on the EPS geofoam buffer are computed numerically. A physical test carried out at the Royal Military College of Canada, is used to investigate the accuracy of the model. The numerical results and physical test results for displacement and load on EPS geofoam buffers are compared and analyzed. The model is shown to capture the trends observed in the physical reduced-scale model shaking table test up to a base excitation level of about 0.g. Quantitative predictions are shown to be in reasonable agreement with physical test results. The model provides a possible method to analyze and predict the force and deformation distribution of an EPS geofoam seismic buffer placed against a rigid retaining wall.
机译:基于一种明确的时间进行有限差分方法,提出了一种多水平层模型来计算靠刚性壁的EPS地质涂层地震缓冲器的压缩负荷 - 时间响应,以减弱地震诱导的动态载荷。地震缓冲液被建模为线性弹性材料。土壤楔分为多个水平切片。每个水平切片的边界通过一系列应力依赖性线性弹簧连接。在数值上计算压缩位移和EPS Geofoam缓冲液上的载荷的分布和幅度。在加拿大皇家军校进行的物理测试,用于调查模型的准确性。比较和分析EPS地质缓冲液的位移和负荷的数值结果和物理测试结果。该模型显示在物理减压模型摇动台测试中观察到的趋势,直到大约0.g的基础激发水平。定量预测显示与物理测试结果合理一致。该模型提供了一种可能的方法来分析和预测EPS Geofoam地震缓冲器的力和变形分布,其抵靠刚性挡土墙。

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