Use of a Linear Discretization of the Velocity Potential in the Frequency-Domain Linear Potential Flow Theory

P. Wuillaume, Lucas Letournel, F. Rongère, Camille Chauvigné
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Abstract

This study investigates the use of a linear discretization of the velocity potential in a frequency-domain potential flow based solver. The velocity potential is assumed to vary linearly over each panel. This approach differs from the Constant Panel Method (CPM), classically used in diffraction-radiation codes. The linear discretization is studied as a possible interesting strategy in terms of accuracy and CPU time. The first goal of this study is the presentation of the impact of the linear discretization in the equations of the potential flow theory. The second goal is the quantification of its interest in terms of accuracy and CPU time compared to the Constant Panel Method.
频率域线性势流理论中速度势线性离散化的应用
本文研究了速度势的线性离散化在基于频域势流的求解器中的应用。假定速度势在每个面板上呈线性变化。这种方法不同于常数面板法(CPM),经典地用于衍射辐射码。从精度和CPU时间方面研究了线性离散化作为一种可能的有趣策略。本研究的第一个目标是提出线性离散化对势流理论方程的影响。第二个目标是量化与常量面板方法相比,它在精度和CPU时间方面的兴趣。
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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