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Three Dimensional Dynamic Analysis of Water Storage Tanks Considering FSI Using FEM

机译:考虑有限元分析的储水罐三维有限元分析

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In this study, to investigate and analyze the seismic behavior of concrete in open rectangular water storage tanks in two-dimensional and three-dimensional spaces, the Finite Element Method has been used. Through this method, dynamic responses can be investigated together in fluid storages system. Soil behavior has been simulated using tanks boundary conditions in linear form. In this research, in addition to flexibility of wall, the effects of fluid-structure interaction on seismic response of tanks have been investigated to account for the effects of flexible foundation in linear boundary conditions form, and a dynamic response of rectangular tanks in two-dimensional and three-dimensional spaces using finite element method has been provided. The boundary conditions of both rigid and flexible walls in two-dimensional finite element method have been considered to investigate the effect of wall flexibility on seismic response of fluid and storage system. Furthermore, three-dimensional model of fluid-structure interaction issue together with wall flexibility has been analyzed under the three components of earthquake. The obtained results show that two-dimensional model is also accurately near to the results of three-dimension as well as flexibility of foundation leads to absorb received energy and relative reduction of responses.
机译:在这项研究中,为了研究和分析在二维和三维空间中开放式矩形储水罐中混凝土的抗震性能,使用了有限元方法。通过这种方法,可以在流体存储系统中一起研究动力响应。土壤行为已使用线性形式的储罐边界条件进行了模拟。在这项研究中,除了墙的柔韧性外,还研究了流固耦合对罐体地震响应的影响,以考虑线性边界条件形式中柔性基础的影响以及两向矩形罐体的动力响应。已经提供了使用有限元方法的三维空间。二维有限元方法考虑了刚性和柔性壁的边界条件,以研究壁的柔性对流体和存储系统地震响应的影响。此外,在地震的三个分量下,分析了流固耦合问题的三维模型以及墙体的柔性。所获得的结果表明,二维模型也准确地接近于三维的结果,并且基础的柔韧性导致吸收接收的能量和响应的相对减少。

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