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Theoretical and experimental investigation of propeller shaft loads in transient conditions

机译:瞬态条件下螺旋桨轴载荷的理论和实验研究

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This paper investigates experimentally and numerically the effect on the propeller shaft loads of dynamically changing propeller speed and azimuth angle of thruster propellers. Model tests with a six-component shaft dynamometer were performed in the large towing tank at the Marine Technology Centre. A blade element momentum theory (BEMT) model is applied for numerical analysis. It is found that the side forces and bending moments on the propeller in strongly oblique inflow are quite sensitive to dynamically changing azimuth angle; for instance are the maximum values of vertical side force and horizontal bending moments effectively doubled when the azimuth angle is changed dynamically. On the other hand, dynamically changing the azimuth angle is less important for the thrust and torque of the propeller. For ships, the effect of dynamically changing the propeller speed can be ignored and the quasi-static values used.
机译:本文通过实验和数值研究动态改变推进器螺旋桨速度和方位角对推进器轴载荷的影响。在海洋技术中心的大型拖船舱中使用六分量轴测功机进行了模型测试。叶片动量理论(BEMT)模型用于数值分析。发现在强烈斜流中螺旋桨上的侧向力和弯矩对动态改变方位角非常敏感。例如,当方位角动态变化时,垂直侧向力和水平弯矩的最大值有效地加倍。另一方面,动态改变方位角对于螺旋桨的推力和扭矩而言并不重要。对于船舶,可以忽略动态更改螺旋桨速度的影响,而使用准静态值。

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