Using the Floating Body Symmetries to Speed Up the Numerical Computation of Hydrodynamics Coefficients With Nemoh

M. Ancellin, F. Dias
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引用次数: 2

Abstract

The open source potential flow BEM solver Nemoh (developed at École Centrale de Nantes) is widely used today, notably for the development of wave energy converters. The use of a linear potential flow theory allows quick estimations of the hydro-dynamic properties of the device, such as its added mass or its radiation damping. Nonetheless, their computation with Nemoh can still be time consuming and could be optimized to facilitate the R&D process. Many wave energy converter concepts present symmetric shapes: for instance rotational symmetry for point absorbers or translation invariance for cylindrical shapes. These symmetries can be exploited in the BEM solver to significantly speed up the computations. In this paper, the mathematical effect of symmetries on the BEM resolution will be discussed and some results of its implementation in Nemoh will be presented.
利用浮体对称性加快Nemoh流体动力系数的数值计算
开源的势流BEM求解器Nemoh(在École Centrale de Nantes开发)今天被广泛使用,特别是用于波浪能转换器的开发。线性势流理论的使用允许快速估计装置的流体动力特性,例如其增加的质量或其辐射阻尼。尽管如此,他们使用Nemoh的计算仍然很耗时,可以优化以促进研发过程。许多波能转换器概念呈现对称形状:例如点吸收器的旋转对称或圆柱形的平移不变性。这些对称性可以在边界元求解器中得到利用,大大加快了计算速度。本文将讨论对称性对边界元分辨率的数学影响,并给出其在Nemoh上实现的一些结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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