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Exploring the effects of speed and scale on a ship’s form factor using CFD

机译:使用CFD探索速度和规模对船舶形式因素的影响

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The problem of predicting a ship’s form factor and associated scale effects has been subject to many investigations in recent years. In this study, an attempt is made to investigate whether the form factor is influenced by a change in the ship’s speed by numerically modelling a geosim series of the KCS hull form by means of a RANS solver. The turbulence dependence of the problem is also studied by altering the closure model among three widely used approaches (thek-ω, k-ω SST,andk-εmodels). The results show that at very low speeds (Froude numbers in the range of 0.02–0.06) the numerical model predicts changes in the form factor of a ship between 10% and 20%, depending on the turbulence model and scale factor choices. As the speed is increased further, the form factor exhibits little change, usually in the range of 1% or less. Simulations where the Reynolds number is changed by approximately two orders of magnitude, achieved by altering the value of viscosity, confirmed that the form factor can be considered Froude-dependent only for low speeds, predicting essentially identical values when high speed cases are considered.
机译:预测船舶形容要素和相关规模效应的问题近年来一直受到许多调查的影响。在这项研究中,尝试研究表格因素是否受到船舶速度的变化,通过rans求解器数值模拟KCS船体形式。还通过改变三种广泛使用的方法(THEK-ω,K-ωSST,ANDK-εmodels)之间改变闭合模型来研究问题的湍流依赖性。结果表明,在非常低的速度(0.02-0.06的范围内的FRoude数字),数值模型预测船舶的形式因子的变化,距离湍流模型和规模因子选择。随着速度的进一步增加,形状因子几乎没有变化,通常在1%或更小的范围内。通过改变粘度的值来实现雷诺数雷诺数的仿真,确认,在考虑高速情况时,可以仅考虑FRoude依赖于FRoude依赖性。

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