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Dynamic analysis of concrete gravity dam-reservoir systems by wavenumber approach in the frequency domain

机译:频率域中用波数法对混凝土重力坝水库系统进行动力分析

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摘要

Dynamic analysis of concrete gravity dam-reservoir systems is an important topic in the study of fluid-structure interaction problems. It is well-known that the rigorous approach for solving this problem relies heavily on employing a two-dimensional semi-infinite fluid element. The hyper-element is formulated in frequency domain and its application in this field has led to many especial purpose programs which were demanding from programming point of view. In this study, a technique is proposed for dynamic analysis of dam-reservoir systems in the context of pure finite element programming which is referred to as the wavenumber approach. In this technique, the wavenumber condition is imposed on the truncation boundary or the upstream face of the near-field water domain. The method is initially described. Subsequently, the response of an idealized triangular dam-reservoir system is obtained by this approach, and the results are compared against the exact response. Based on this investigation, it is concluded that this approach can be envisaged as a great substitute for the rigorous type of analysis
机译:混凝土重力坝-水库系统的动力分析是研究流固耦合问题的重要课题。众所周知,解决这个问题的严格方法在很大程度上依赖于采用二维半无限流体元件。超元素是在频域中提出的,其在该领域的应用导致了许多特殊目的的程序,从编程的角度来看,这些程序是有要求的。在这项研究中,提出了一种在纯有限元程序设计下对大坝-水库系统进行动力分析的技术,称为波数法。在该技术中,波数条件被施加在截断边界或近场水域的上游面上。首先描述该方法。随后,通过这种方法获得了理想的三角坝-水库系统的响应,并将结果与​​精确响应进行了比较。根据这项调查,得出的结论是,可以认为这种方法可以替代严谨的分析类型。

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