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Influence of irregular canyon shape on location of truncation surface

机译:不规则峡谷形状对截断面位置的影响

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Fluid-structure interaction phenomenon, by its nature, is three-dimensional and consequently dependant on the shape of a dam and canyon that in-fact defines the spatial domain where the generated acoustic waves are spread. The complex topography of the terrain in general requires sufficiently large extent of reservoir to be included in the model, which is undoubtedly feasible if BEM technique is used. This paper shows that the irregular canyon shape dictates "the most adequate" location of the truncation surface that gives the smallest negative impact on calculation accuracy. The derived conclusions are based on various 3D analyses of a rigid dam-reservoir system with different shapes and lengths of the fluid domain, where the fluid is treated as incompressible and inviscid. The presented work contributes towards disclosure of the topographic site effects and towards promotion of simple and effective procedure for generation of BE mesh, which is quite accurate in following the topology of the terrain.
机译:从本质上讲,流固耦合现象是三维的,因此取决于大坝和峡谷的形状,实际上,大坝和峡谷的形状决定了所产生声波在其中传播的空间域。通常,地形的复杂地形要求模型中包括足够大的储层,如果使用BEM技术,这无疑是可行的。本文表明,不规则的峡谷形状决定了截断面的“最适当”位置,从而对计算精度的负面影响最小。得出的结论是基于对具有不同形状和长度的流体域的刚性大坝-储层系统进行的各种3D分析得出的,其中流体被视为不可压缩和无粘性。提出的工作有助于揭示地形站点的影响,并有助于促进生成BE网格的简单而有效的过程,这在遵循地形拓扑时是非常准确的。

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