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Nonlinear ship waves and computational fluid dynamics

机译:非线性船舶波与计算流体动力学

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摘要

Research works undertaken in the first author’s laboratory at the University of Tokyo over the past 30 years are highlighted. Finding of the occurrence of nonlinear waves (named Free-Surface Shock Waves) in the vicinity of a ship advancing at constant speed provided the start-line for the progress of innovative technologies in the ship hull-form design. Based on these findings, a multitude of the Computational Fluid Dynamic (CFD) techniques have been developed over this period, and are highlighted in this paper. The TUMMAC code has been developed for wave problems, based on a rectangular grid system, while the WISDAM code treats both wave and viscous flow problems in the framework of a boundary-fitted grid system. These two techniques are able to cope with almost all fluid dynamical problems relating to ships, including the resistance, ship’s motion and ride-comfort issues. Consequently, the two codes have contributed significantly to the progress in the technology of ship design, and now form an integral part of the ship-designing process.
机译:重点介绍了过去30年在东京大学第一作者实验室进行的研究工作。在匀速行进的船舶附近发现非线性波(称为自由表面冲击波)的出现,为船体形式设计创新技术的发展提供了起点。基于这些发现,在此期间开发了多种计算流体动力学(CFD)技术,并在本文中进行了重点介绍。基于矩形网格系统,已经针对波浪问题开发了TUMMAC代码,而WISDAM代码则在边界拟合网格系统的框架中同时处理了波浪和粘性流问题。这两种技术能够解决几乎所有与船舶有关的流体动力学问题,包括阻力,船舶运动和乘坐舒适性问题。因此,这两个法规对船舶设计技术的进步做出了重大贡献,现在已成为船舶设计过程中不可或缺的一部分。

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