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Inverse modelling of groundwater flow around a large-scale underground cavern system considering the excavation-induced hydraulic conductivity variation

机译:考虑到挖掘诱导的液压导电变化的大规模地下洞室系统周围地下水流动的反向建模

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摘要

This study proposed an inverse modelling procedure for evaluating the anisotropic hydraulic conductivity and its variation induced by excavation in fractured rocks by integrating a strain-dependent hydraulic conductivity model. The time-series measurements of both hydraulic head and discharge were used to construct the objective function for improving the reliability, which was solved with a combined method of orthogonal design, transient groundwater flow modelling, artificial neural network and genetic algorithm -based optimization for reducing the computational cost. The proposed methodology proves its effectiveness by successful inverse modelling of the groundwater flow around the underground caverns at the Jinping-I Hydropower Station. (C) 2016 Elsevier Ltd. All rights reserved.
机译:该研究提出了一种反向建模程序,用于评估各向异性液压导电性及其通过集成应变依赖性液压导电模型通过裂缝岩石中的挖掘诱导的变化。液压头和放电的时间序列测量用于构建用于提高可靠性的目标函数,这些函数以正交设计,瞬态地下水模型,人工神经网络和遗传算法的组合方法解决了用于减少的优化计算成本。所提出的方法通过在金平-i水电站的地下洞穴周围的地下洞穴周围的地下水成功逆建模证明了其有效性。 (c)2016 Elsevier有限公司保留所有权利。

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