Typhoon: A vortex-lattice code for assessing dynamic stability characteristics of hydrofoil crafts

IF 0.6 Q4 ENGINEERING, MARINE International Shipbuilding Progress Pub Date : 2021-10-18 DOI:10.3233/isp-210006
Alec Bagué, J. Degroote, Toon Demeester, E. Lataire
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引用次数: 0

Abstract

In this paper an open-source implementation of the vortex-lattice method to perform a dynamic stability analysis for hydrofoil crafts is discussed. The difference with existing vortex-lattice codes is the addition of a free-surface boundary condition which is needed to analyse surface piercing foils. This code, called Typhoon, can be used to perform a dynamic stability analysis (DSA) on hydrofoil vessels. The goal of this code is to have an easy-to-use and cheap alternative to compare different designs in early design stages. This paper gives a brief background to all the concepts used, followed by a short theoretical explanation of the vortex-lattice method. The second part of this paper focuses on a practical example of how this code can be used on an example.
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台风:用于评估水翼艇动态稳定性特性的涡格代码
本文讨论了涡格方法的开源实现,该方法用于水翼船的动态稳定性分析。与现有涡格码的不同之处在于增加了一个自由表面边界条件,这是分析表面穿透箔所需要的。该代码被称为Typhoon,可用于对水翼船进行动态稳定性分析(DSA)。此代码的目标是在早期设计阶段提供一个易于使用且廉价的替代方案来比较不同的设计。本文简要介绍了所有使用的概念的背景,然后对涡格方法进行了简短的理论解释。本文的第二部分重点介绍了如何在示例中使用此代码的一个实际示例。
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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来源期刊
CiteScore
2.60
自引率
0.00%
发文量
8
期刊介绍: The journal International Shipbuilding Progress was founded in 1954. Each year four issues appear (in April, July, September and December). Publications submitted to ISP should describe scientific work of high international standards, advancing subjects related to the field of Marine Technology, such as: conceptual design structural design hydromechanics and dynamics maritime engineering production of all types of ships production of all other objects intended for marine use shipping science and all directly related subjects offshore engineering in relation to the marine environment ocean engineering subjects in relation to the marine environment
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