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Effect of geometrical features on the contra-rotating propeller hydrodynamic performances

机译:几何特征对旋转螺旋桨流体动力学性能的影响

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New contra-rotating four-bladed DTMB propeller configurations operating in open water are numerically studied to determine their hydrodynamic performances. The unsteady turbulent flow around propellers is modelled by RANS equations with Kω SST model then solved by a CFD code. The computational domain is divided in two blocks linked with a rotating interface. The obtained results show that thrust and efficiency of the contra-rotating (CRP) increase compared to the single propeller, leading to a significant reduction of the propeller diameter. The variation in axial spacing and angular displacement seems to have little effect on the CRP efficiency. The results also show that the thrust can be further improved by adopting a moderate negative twist angle of the rear propeller.
机译:在开放水中运行的新对比旋转的四刃DTMB螺旋桨配置在数值上研究以确定其流体动力学性能。螺旋桨周围的不稳定湍流由Rans方程式建模,然后通过CFD码解决了KΩSST模型。计算域分为与旋转接口相关的两个块。得到的结果表明,与单个螺旋桨相比,对抗旋转(CRP)的推力和效率增加,导致螺旋桨直径的显着降低。轴向间隔和角位移的变化似乎对CRP效率几乎没有影响。结果还表明,通过采用后螺旋桨的中等负捻角度,可以进一步提高推力。

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