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An efficient time-domain damping solvent extraction algorithm and its application to arch dam-foundation interaction analysis

机译:一种高效的时域阻尼溶剂提取算法及其在拱坝-基础相互作用分析中的应用

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摘要

The dynamic structure-unbounded foundation interaction plays an important role in the seismic response of structures. The damping solvent extraction (DSE) method put forward by Wolf and Song has a great advantage of simplicity, with no singular integrals to be evaluated, no fundamental solution required and convolution integrals avoided. However, implementation of DSE in the time domain to large-scale engineering problems is associated with enormous difficulties in evaluating interaction forces on the structure-unbounded foundation interface, because the displacement on the corresponding interface is an unknown vector to be found. Three sets of interrelated large algebraic equations have to be solved simultaneously. To overcome these difficulties, an efficient algorithm is presented, such that the solution procedure can be greatly simplified and computational effort considerably saved. To verify its accuracy, two examples with analytical solutions were investigated, each with a parameter analysis on the domain size and amount of artificial damping. Then with the parameters suggested in the parameter study, the complex frequency-response functions and earthquake time history analysis of Morrow Point dam were presented to demonstrate the applicability and efficiency of DSE approach.
机译:动力结构-无界地基相互作用在结构的地震反应中起重要作用。 Wolf和Song提出的阻尼溶剂萃取(DSE)方法具有简单易用的巨大优势,无需评估奇异积分,不需要基本解并且避免了卷积积分。但是,在时域中对大型工程问题实施DSE与评估结构无边界基础界面上的相互作用力时遇到了巨大困难,因为相应界面上的位移是未知向量。必须同时求解三套相互关联的大代数方程。为了克服这些困难,提出了一种有效的算法,从而可以大大简化求解过程并大大节省计算量。为了验证其准确性,研究了两个带有解析解的示例,每个示例都对域大小和人工阻尼量进行了参数分析。然后,根据参数研究中提出的参数,提出了Morrow Point大坝的复杂频率响应函数和地震时程分析,以证明DSE方法的适用性和有效性。

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