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Computational hydrodynamic analysis of the propeller-rudder and the AZIPOD systems

机译:螺旋桨-舵和AZIPOD系统的计算流体力学分析

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摘要

A computational method has been developed to predict the hydrodynamic performance of the propeller-rudder systems (PRS) and azimuthing podded drive (AZIPOD) systems. The method employs a vortex-based lifting theory for the propeller and the potential surface panel method for the steering system. Three propeller models along with three steering systems (rudder and strut, flap and pod (SFP)) are implemented in the present calculations for the cases of uniform and non-uniform conditions. Computed velocity components show good agreement with the experimental measurements behind a propeller with or without the rudder. Calculated thrust, torque and lift also agree well with the experimental results. Computations are also performed for an AZIPOD system in order to obtain the pressure distributions on the SFP, and the hydrodynamic performance (thrust, torque and lift coefficients). The present method is useful for examining the performance of the PRS and AZIPOD systems in the hope of estimating the propulsion and the maneuverability characteristics of the marine vehicles more accurately.
机译:已经开发出一种计算方法来预测螺旋桨-舵系统(PRS)和方位角荚式驱动器(AZIPOD)系统的流体力学性能。该方法对螺旋桨采用基于涡旋的升力理论,对转向系统采用潜在的面板法。对于均匀和不均匀条件的情况,本计算中采用了三个螺旋桨模型以及三个转向系统(舵和撑杆,襟翼和吊舱(SFP))。计算出的速度分量与带或不带舵的螺旋桨后面的实验测量结果显示出很好的一致性。计算得出的推力,扭矩和升力也与实验结果非常吻合。为了获得SFP上的压力分布以及流体力学性能(推力,扭矩和升力系数),还对AZIPOD系统执行了计算。本方法对于检查PRS和AZIPOD系统的性能是有用的,以期希望更准确地估计船舶的推进力和机动性。

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