An Implicit Time-Domain Rankine Panel Method for Ship Motions in a Non-Inertial Body-Fixed Frame of Reference

H. Liang, Yanlin Shao, Kie Hian Chua, A. Magee
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Abstract

Evaluation of wave loads on a ship translating in water waves is of practical importance in ship hydrodynamics, because it is paramount to the design of ship hull structures and provides essential inputs for ship maneuvering analysis. The linear radiation and diffraction of water waves by a translating ship is studied in this paper. A time-domain Rankine panel method is developed in a non-inertial body-fixed coordinate system, which is able to consider large-amplitude horizontal motions consistently. The double-body flow is used as the basic steady flow model. To ensure numerical stability, an implicit Euler scheme is adopted for time marching, and horizontal derivatives on the free surface are calculated using an upwind-biased finite difference scheme. Numerical examples in comparison with experimental measurements are exhibited to demonstrate the validity of the developed solver.
非惯性固定坐标系下船舶运动的隐式时域朗肯面板法
船舶在水波中平移时的波浪载荷评估在船舶水动力学中具有重要的实际意义,因为它对船体结构的设计至关重要,并为船舶操纵分析提供重要的输入。本文研究了水波在平动船舶中的线性辐射和衍射问题。在非惯性定体坐标系下,提出了一种能连续考虑大幅度水平运动的时域朗肯面板方法。采用双体流动作为基本的定常流动模型。为了保证数值的稳定性,采用隐式欧拉格式进行时间推进,采用逆风偏置有限差分格式计算自由表面上的水平导数。数值算例与实验测量结果进行了比较,验证了所建求解器的有效性。
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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