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Finite Element Analysis of Dam-Reservoir Interaction Using High-Order Doubly Asymptotic Open Boundary

机译:利用高阶双渐近开放边界使用大坝水库相互作用的有限元分析

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摘要

The dam-reservoir system is divided into the near field modeled by the finite element method, and the far field modeled by the excellent high-order doubly asymptotic open boundary (DAOB). Direct and partitioned coupled methods are developed for the analysis of dam-reservoir system. In the direct coupled method, a symmetric monolithic governing equation is formulated by incorporating the DAOB with the finite element equation and solved using the standard time-integration methods. In contrast, the near-field finite element equation and the far-field DAOB condition are separately solved in the partitioned coupled methodm, and coupling is achieved by applying the interaction force on the truncated boundary. To improve its numerical stability and accuracy, an iteration strategy is employed to obtain the solution of each step. Both coupled methods are implemented on the open-source finite element code OpenSees. Numerical examples are employed to demonstrate the performance of these two proposed methods.
机译:大坝水库系统被分为有限元方法建模的近场,以及由优异的高阶双渐近开放边界(DAOB)建模的远场。开发了直接和分区耦合方法,用于分析坝储层系统。在直接耦合方法中,通过将DAOB与有限元方程结合并使用标准时间积分方法进行解决来配制对称整体控制方程。相反,近场有限元方程和远场DAOB条件以分区耦合的方法分别解决,并且通过将相互作用力施加在截短的​​边界上来实现耦合。为了提高其数值稳定性和准确性,采用迭代策略来获得每个步骤的溶液。耦合方法都在开源有限元代码开放中实现。使用数值例证来证明这两个提出方法的性能。

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