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首页> 外文期刊>Journal of Naval Architecture and Marine Engineering >Motion predictions of ships in actual operating conditions using potential flow based solver
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Motion predictions of ships in actual operating conditions using potential flow based solver

机译:使用基于势流的求解器对船舶在实际工况下的运动进行预测

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Prediction of ship's response in real voyage condition is essential for efficient ship design. At sea, ships rarely voyage in head wave conditions, and mostly prefer oblique waves for lower resistance and better propulsion. This paper provides oblique wave simulation results for a container, tanker and bulk carrier using a commercial potential flow (PF) based solver, HydroSTAR. Although, PF codes have limitation regarding resistance prediction, they are well reliable in predicting ship motion in waves. The paper aims at providing a relative comparison of ship resistance and motion in different heading angles for three major ship models namely KCS, KVLCC2 and JBC. The paper should prove useful to shippers in case of weather routing or route selection for voyage.
机译:预测实际航行条件下的船舶响应对于有效的船舶设计至关重要。在海上,船舶很少在头波条件下航行,并且更喜欢斜波,以降低阻力并获得更好的推进力。本文使用基于商业势流(PF)的求解器HydroSTAR提供了对集装箱,油轮和散货船的斜波仿真结果。尽管PF代码在阻力预测方面有局限性,但在预测波浪中的船舶运动方面非常可靠。本文旨在针对三种主要船舶模型(KCS,KVLCC2和JBC)提供不同航向角下的船舶阻力和运动的相对比较。在天气路线或航路选择的情况下,本文应证明对托运人有用。

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