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Experimental Study on the Six Degree-of-Freedom Motions of a Damaged Ship Floating in Regular Waves

机译:破损船舶规则波漂浮的六自由度实验研究

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摘要

One of the most critical issues for ship owners, shipbuilders, and insurance companies is the operational safety. In particular, keeping damaged ships stable in waves is of great interest, because more nonconventional hull forms are being introduced for military and passenger vessels while international rules and regulations are becoming stricter. However, ship stability for damaged ships is quite different from that for intact ships as the assessment is very complicated and difficult due to the highly nonlinear behavior. Computational fluid dynamics (CFD) methods that solve the Navier–Stokes equations are acknowledged as the only viable approach to simulate and analyze these complex physical phenomena. Although there have been a number of research activities reported on damaged ship stability recently, most of them are not designed to validate CFD studies. For a data set to be valuable for CFD validation and development, model tests should eliminate unclear factors as much as possible. The main objective of this study is to establish an experimental database for CFD validation by collecting data from towing tank tests of a ship hull's six degree-of-freedom (6DOF) motion responses in regular waves for both intact and damaged conditions. A mooring system was designed to prevent drift motions of the ship model. Parametric roll was not observed when the ship was damaged, although it was observed for the intact ship in the same wave conditions. The mooring force acting on the ship model due to spring tension was also calculated.
机译:对于船东,造船厂和保险公司来说,最关键的问题之一就是操作安全性。特别地,使受损船舶在波浪中保持稳定非常重要,因为在国际规则和规定日益严格的同时,军用和客船采用了更多的非常规船体形式。但是,由于高度的非线性行为,评估非常复杂且困难,因此受损船舶的船舶稳定性与完整船舶的船舶稳定性大不相同。解决Navier–Stokes方程的计算流体动力学(CFD)方法被认为是模拟和分析这些复杂物理现象的唯一可行方法。尽管最近有许多关于损坏的船舶稳定性的研究活动的报道,但大多数活动并非旨在验证CFD研究。为了使数据集对CFD验证和开发有价值,模型测试应尽可能消除不清楚的因素。这项研究的主要目的是建立一个用于CFD验证的实验数据库,方法是从拖船测试中收集完整和受损情况下规则波中六种自由度(6DOF)运动响应的数据。设计了系泊系统以防止船舶模型的漂移运动。尽管在相同的波浪条件下对完整的船舶进行了观察,但当船舶损坏时未观察到参数横摇。还计算了由于弹簧张力作用在船模上的系泊力。

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