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Seismic strain analysis of buried pipelines in a fault zone using hybrid FEM-ANN approach

机译:基于混合有限元-神经网络的断层带地下管道地震应变分析

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This study was concerned on the application of a hybrid approach for analyzing the buried pipelines deformations subjected to earthquakes. Nonlinear time-history analysis of Finite Element (FE) model of buried pipelines, which was modeled using laboratory data, has been performed via selected earthquakes. In order to verify the FE model with experiments, a statistical test was done which demonstrated a good conformity. Then, the FE model was developed and the optimum intersection angle of pipeline and fault was obtained via genetic algorithm. Transient seismic strain of buried pipeline in the optimum intersection angle of pipeline and fault was investigated considering the pipes diameter, the distance of pipes from fault, the soil friction angles and seismic response duration of buried pipelines. Also, a two-layer perceptron Artificial Neural Network (ANN) was trained using results of FE model, and a nonlinear relationship was obtained to predict the bending strain of buried pipelines based on the pipes diameter, intersection angles of the pipelines and fault, the soil friction angles, distance of pipes from the fault, and seismic response duration; whereas it contains a wide range of initial input data without any requirement to laboratory measurements.
机译:这项研究关注混合方法在分析地震作用下的地下管道变形中的应用。通过选定的地震,对地下管道的有限元(FE)模型进行了非线性时程分析,该模型使用实验室数据进行了建模。为了通过实验验证有限元模型,进行了统计检验,证明了良好的一致性。然后,开发了有限元模型,并通过遗传算法获得了管道与断层的最佳交叉角。考虑管径,管距断层的距离,土的摩擦角和地下管线的地震反应持续时间,研究了管线与断层的最佳交角下地下管线的瞬态地震应变。同时,利用有限元模型的结果对两层感知器人工神经网络进行了训练,得到了非线性关系,根据管道直径,管道与断层的交角,断层,管道,管道,管道,管道,管道,管道,管道,管道,管道,管道,管道,管道,管道,管道,管道,管道,管道,管道,管道等。土壤摩擦角,管道与断层之间的距离以及地震响应持续时间;而它包含各种初始输入数据,而无需实验室测量。

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