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FEASIBILITY STUDY OF RANS IN PREDICTING PROPELLER CAVITATION IN BEHINDHULL CONDITIONS

机译:RAN在背后条件下预测螺旋桨空化的可行性研究

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摘要

The propeller cavitation not only affects the propulsive efficiency of a ship but also can cause vibration and noise. Accurate predictions of propeller cavitation are crucial at the design stage. This paper investigates the feasibility of the Reynolds-averaged Navier-Stokes (RANS) method in predicting propeller cavitation in behind-hull conditions, focusing on four aspects: (i) grid sensitivity; (ii) the time step effect; (iii) the turbulence model effect; and (iv) ability to rank two slightly different propellers. The Schnerr-Sauer model is adopted as the cavitation model. A model test is conducted to validate the numerical results. Good agreement on the cavitation pattern is obtained between the model test and computational fluid dynamics. Two propellers are computed, which have similar geometry but slightly different pitch ratios. The results show that RANS is capable of correctly differentiating the cavitation patterns between the two propellers in terms of the occurrence of face cavitation and the extent of sheet cavitation; moreover, time step size is found to slightly affect sheet cavitation and has a significant impact on the survival of the tip vortex cavitation. It is also observed that grid refinement is crucial for capturing tip vortex cavitation and the two-equation turbulence models used - realizable k-epsilon and shear stress transport (SST) k-omega - yield similar cavitation results.
机译:螺旋桨空化不仅影响船舶的推进效率,而且可能导致振动和噪音。精确的螺旋桨空化预测在设计阶段至关重要。本文调查了雷诺平均Navier-Stokes(RANS)方法在预测船体条件下预测推进器空化方面的可行性,专注于四个方面:(i)网格敏感性; (ii)时间阶段效应; (iii)湍流模型效果; (iv)能力排列两个略微不同的螺旋桨。 SchnerR-Sauer模型被采用作为空化模型。进行模型测试以验证数值结果。在模型测试和计算流体动力学之间获得了对空化图案的良好一致性。计算两个螺旋桨,其具有类似的几何形状,但略微不同的音高比。结果表明,RAN能够在面部空穴的发生和片状程度的情况下正确地将两个螺旋桨之间的空化图案正确区分开;此外,发现时间梯度略微影响纸张空化,并且对尖端涡旋空化的存活产生显着影响。还观察到,电网细化对于捕获尖端涡旋空化和所使用的双方程湍流模型至关重要,可实现的K-Epsilon和剪切应力传输(SST)K-Omega - 收益相似的空化结果。

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