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Two Benchmark Problems for Three-Dimensional, Linear Hydroelasticity

机译:三维线性水弹性的两个基准问题

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There has been substantial development in computer codes for three-dimensional linear hydroelasticity, but to the authors' knowledge, there are no problems of sufficient complexity put forth in the open literature to serve as appropriate benchmark problems for a floating structure. We present in this paper detailed descriptions of two such problems for three-dimensional hydroelastic computer codes. The first structure is a rectangular, box-shaped "barge" with dimensions 100 m X 10 m X 2 m. The second is a Wigley hull with dimensions 100 m X 10 m X 4.5 m. In both cases, the deformational response is primarily global. Detailed descriptions of each structure, the finite element structural shell models, and the hydrodynamic fluid models, based on the constant panel Green's function method, are provided. Fine meshes are used to minimize discretization errors. Detailed results, including dry natural periods and modes, wet natural periods, and wave-induced displacements and stresses, are presented. The detail is sufficient for others to use the problems as benchmarks for computer codes.
机译:三维线性水弹性的计算机代码已经有了长足的发展,但是据作者所知,公开文献中没有提出足够复杂的问题来作为浮动结构的适当基准问题。我们在本文中详细描述了三维水弹性计算机代码中的两个此类问题。第一种结构是矩形的箱形“驳船”,尺寸为100 m X 10 m X 2 m。第二个是尺寸为100 m X 10 m X 4.5 m的Wigley船体。在这两种情况下,变形响应主要是整体的。提供了基于恒定面板格林函数方法的每种结构,有限元结构壳模型和流体动力流体模型的详细说明。细网格用于最小化离散化误差。给出了详细的结果,包括干燥的自然周期和模式,潮湿的自然周期以及波浪引起的位移和应力。详细信息足以使其他人将问题用作计算机代码的基准。

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