Ab'/> Numerical prediction analysis of propeller exciting force for hull–propeller–rudder system in oblique flow
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Numerical prediction analysis of propeller exciting force for hull–propeller–rudder system in oblique flow

机译:斜壳桨舵系统螺旋桨激振力数值预测分析。

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AbstractIn order to analyze the characteristics of propeller exciting force, the hybrid grid is adopted and the numerical prediction of KCS ship model is performed for hull–propeller–rudder system by Reynolds-Averaged Navier Stokes (RANS) method and volume of fluid (VOF) model. Firstly, the numerical simulation of hydrodynamics for bare hull at oblique state is carried out. The results show that with the increasing of the drift angle, the coefficients of resistance, side force and yaw moment are constantly increasing, and the bigger the drift angle, the worse the overall uniformity of propeller disk. Then, propeller bearing force for hull–propeller–rudder system in oblique flow is calculated. It is found that the propeller thrust and torque fluctuation coefficient peak in drift angle are greater than that in straight line navigation, and the negative drift angle is greater than the positive. The fluctuation peak variation law of coefficient of side force and bending moment are different due to various causes.
机译: 摘要 为了分析螺旋桨激振力的特性,采用了混合网格并进行了KCS舰船模型的数值预测通过雷诺平均纳维斯托克斯(RANS)方法和流体体积(VOF)模型对船体-螺旋桨-舵系统进行了研究。首先,对裸壳在倾斜状态下的流体动力学进行了数值模拟。结果表明,随着漂移角的增大,阻力系数,侧向力和横摆力矩不断增大,并且漂移角越大,螺旋桨盘的整体均匀性越差。然后,计算斜流中船体-螺旋桨-舵系统的螺旋桨支承力。研究发现,漂移角的螺旋桨推力和转矩波动系数峰值大于直线航行时的峰值,负漂移角大于正值。由于各种原因,侧向力和弯矩系数的波动峰值变化规律有所不同。

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