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Numerical investigation of the unsteady flow of a hybrid CRP pod propulsion system at behind-hull condition

机译:Hyblid CRP POD推进系统在船体状态下不稳定流动的数值研究

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Flows induced by hybrid CRP pod propulsion systems (CRP-POD) are fundamentally characterized by unsteadiness. This work presents a numerical study on the unsteady flow of a CRP-POD at behind-hull condition based on CFD (Computational Fluid Dynamics). Unsteady RANS method is adopted, coupled with SSTk-ωturbulence model and sliding mesh method. The propeller thrusts and torques obtained by CFD is validated by model tests and acceptable agreements are obtained. The time histories of shingle-blade loads and pressures near the hull surface are recorded for the analysis of unsteady flow features. The cases of forward propeller alone and aft propeller alone are also computed to distinguish the hull-propeller interaction and propeller-propeller interaction. The results show the blade loads of both forward and aft propellers strongly fluctuate with phase angles. For the forward propeller, the blade load fluctuation is mainly governed by the hull-propeller interaction, while the aft blade load is remarkably affected by the propeller-propeller interaction in terms of the load average and fluctuation pattern. The fields of pressure, vorticity and velocity are also analyzed to reveal the unsteady flow features.
机译:由杂交CRP POD推进系统(CRP-POD)引起的流量基本上是不稳定的。基于CFD(计算流体动力学),这项工作提出了关于CRP-POD的不稳定流量的数值研究。采用不稳定的RAN方法,耦合SSTK-ωTurbulence模型和滑动网格方法。通过CFD获得的螺旋桨推力和扭矩通过模型测试验证,并获得可接受的协议。记录船体表面附近的瓦片叶片载荷和压力的时间历史记录用于分析非定常流量特征。单独和单独的前螺旋桨单独的前进螺旋桨的情况,以区分船体螺旋桨相互作用和螺旋桨 - 螺旋桨相互作用。结果表明,正向和后螺旋桨两者的叶片负载强烈地垂直波动。对于前向螺旋桨,刀片负荷波动主要由船体螺旋桨相互作用控制,而船尾载荷在负载平均值和波动图案方面受到螺旋桨 - 螺旋桨相互作用的显着影响。还分析了压力,涡流和速度的领域,以揭示不稳定的流量特征。

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