Impact of earthquake’s epicenter distance to failure of the embankment – A seismic prediction

A. Namdar, Omer Mughieda, Ts Haji Azahar Bin Mohd Yasin, Falak Azhar
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Abstract

Cracks in clayey soil cause a reduction in the seismic loading capacity which can lead to structural failures. Seismic acceleration is the primary cause of crack propagation and damage to the earth's structure. This study investigated the impact of the earthquake's epicenter distance on the embankment model with a pre-existing crack in the embankment's core. The research adopted the numerical modeling method of soil categorized as a no-tensile material to explain displacement in selected points of the model using the extended finite element method (XFEM). Artificial Neural Networks (ANNs) were used to predict displacement obtained by XFEM. It was observed that the failure pattern and the maximum displacement time of the model change with the associated distance of the earthquake's epicenter. The key study objective is to understand the model's failure mode and introduce a new classification in earthquake damage prediction.
地震震中距对堤坝溃决的影响 - 地震预测
粘土中的裂缝会导致地震荷载能力下降,从而导致结构破坏。地震加速度是裂缝扩展和土体结构破坏的主要原因。本研究探讨了地震震中距对堤心已有裂缝的堤防模型的影响。研究采用了将土壤归类为无张力材料的数值建模方法,利用扩展有限元法(XFEM)解释模型选定点的位移。人工神经网络(ANN)用于预测 XFEM 得出的位移。结果表明,模型的破坏模式和最大位移时间随震中相关距离的变化而变化。研究的主要目的是了解模型的失效模式,并为地震破坏预测引入一种新的分类方法。
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