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Use of constant, linear and quadratic boundary elements in 3D wave diffraction analysis

机译:在3D波衍射分析中使用恒定,线性和二次边界元素

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The performance of the Boundary Element Method (BEM) depends on the size of the elements and the interpolation function used. However, improvements in accuracy and efficiency obtained with both expansion and grid refinement increases demand on the computational effort. This paper evaluates the performance of constant, linear and quadratic elements in the analysis of the three-dimensional scattering caused by a cylindrical cavity buried in an infinite homogeneous elastic medium subjected to a point load. A circular cylindrical cavity for which analytical solutions are known is used in the simulation analysis. First, the dominant BEM errors are identified in the frequency domain and related to the natural vibration modes of the inclusion. Comparisons of BEM errors are then made for different types of boundary elements, maintaining simmer computational costs. Finally, the accuracy of the BEM solution is evaluated when the nodal point are moved inside lienar and quadratic discontinuous elements.
机译:边界元素方法(BEM)的性能取决于元素的大小和所使用的插值函数。然而,通过扩展和网格细化获得的准确性和效率的提高增加了对计算工作量的需求。本文在分析由圆柱腔埋在无限均匀弹性介质中承受点载荷引起的三维散射时,评估了常数,线性和二次元的性能。在模拟分析中使用已知解析解的圆柱腔。首先,主要的BEM误差在频域中被识别,并且与夹杂物的固有振动模式有关。然后针对不同类型的边界元素进行BEM误差比较,以保持较低的计算成本。最后,当节点在列纳和二次不连续元素内移动时,将评估BEM解决方案的准确性。

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