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Fluid-structure interaction of Brezina arch dam: 3D modal analysis

机译:Brezina拱坝的流固耦合:3D模态分析

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In this paper, modal responses of the Brezina concrete arch dam, Algeria, are determined using the finite elements commercial packages ANSYS. The dam-water-foundation soil system is investigated based on the added mass and Lagrangian approaches. The former approach is simpler and less costly but cannot provide the sloshing frequencies. Furthermore, as reported by other researchers, the added mass approach gives higher coupled frequencies as compared to the actual ones, which are better approximated by those obtained from the Lagrangian approach. The natural frequencies of the dam-water-massless foundation model are well below those of the dam-massless foundation model (without water). But, unexpectedly, the frequencies of the dam-water-foundation model are higher than those of the dam-foundation model. This contrasts with the results of other arch dams, including the Morrow Point dam. The results found herein are likely due to the geometric characteristics of the Brezina dam, which are not typically those of an arch dam. Lastly, considering the coupled mode that yields the largest effective mass, its frequency moderately decreases with the increase of the water level, except for the 10 m water height at which the natural frequency is the highest.
机译:在本文中,使用有限元商业软件包ANSYS确定了阿尔及利亚Brezina混凝土拱坝的模态响应。基于附加质量和拉格朗日方法研究了大坝-水基土壤系统。前一种方法更简单且成本更低,但无法提供晃动频率。此外,正如其他研究人员所报道的那样,与实际频率相比,附加质量法给出的耦合频率更高,而从拉格朗日方法获得的耦合频率则更好。无坝无水基础模型的固有频率远低于无坝无基础模型的固有频率(无水)。但是,出乎意料的是,大坝-水基础模型的频率高于大坝-基础模型的频率。这与包括Morrow Point水坝在内的其他拱坝的结果形成对比。在这里找到的结果可能是由于Brezina大坝的几何特征,通常不是拱坝的几何特征。最后,考虑产生最大有效质量的耦合模式,其频率随水位的增加而适度降低,除了自然频率最高的10 m水位。

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