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Numerical simulation of wake field and propulsion performance in a four-screw ship

机译:四螺杆船尾流场和推进性能的数值模拟

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摘要

Computational studies using the Reynolds Averaged Navler-Stokes (RANS) method on viscous wake fields and the propulsion performance of a four-screw ship were conducted. The self-propulsion experimental investigation was carried out in a towing tank to analyze the propulsion performance of the four-screw ship. The characteristics of the wake field and hydrodynamic performance of the inside and outside propellers were compared in detail. The computational fluid dynamics results and experimental data showed good agreement. There were considerably different distribution patterns of the wake field between inside and outside the propeller disc, especially in the zone behind the brackets. The mean axial velocity at different radii of the inside propeller is generally smaller than that of the outside propeller, which results in the time-averaged loads of the inside propeller becoming larger than those of the outside one. Harmonics analysis indicates that in the considered range of the outer radii, the 1st and 2nd order harmonic components of the inside propeller disc are larger than those of the outside one, which causes the fluctuation amplitudes of the loads on the inside propeller to become higher than those of the outside one.
机译:使用雷诺平均Navler-Stokes(RANS)方法对粘性尾流场和四螺杆船的推进性能进行了计算研究。在拖船上进行了自推进实验研究,以分析四螺杆船的推进性能。详细比较了内部和外部螺旋桨的尾流场特性和流体动力性能。计算流体动力学结果与实验数据吻合良好。螺旋桨盘内部和外部之间,尤其是在托架后面的区域中,尾流场的分布方式有很大不同。内侧螺旋桨在不同半径处的平均轴向速度通常小于外侧螺旋桨的平均轴向速度,这导致内侧螺旋桨的时间平均载荷变得大于外侧螺旋桨的时间平均载荷。谐波分析表明,在所考虑的外半径范围内,内部螺旋桨盘的一阶和二阶谐波分量大于外部螺旋桨盘的一阶和二阶谐波分量,这导致内部螺旋桨上载荷的波动幅度变得大于那些外面的。

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