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Numerical hydrodynamic evaluation of propeller (with hub taper) and podded drive in azimuthing conditions

机译:方位角条件下螺旋桨(带毂锥)和荚式驱动器的数值流体力学评估

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This paper aims to predict the hydrodynamic forces on a propeller with different hub taper angles and a podded drive unit in azimuthing conditions. In order to evaluate the propulsive performance of the podded drive system, a Reynolds-Averaged Navier Stokes (RANS) solver is employed. The method has been first verified by a single propeller with different hub taper angles. The performance curves of the propellers, obtained by numerical methods, have been compared to and validated with experimental results. In the next step, the method has been extended to the podded drive unit for both puller and pusher configurations. The yaw angles of the podded drives are set to vary from - 30° to +30° with 5° increments. The propulsive characteristics, including the torque and thrust of the propeller, the axial force, and the side force of the unit are presented as functions of the advance velocity ratio and yaw angle. Computational results are compared to the available experimental data. Finally, it is shown there is good agreement between the experimental measurements and the results of the present numerical method.
机译:本文旨在预测在不同方位角条件下具有不同轮毂锥角和推进器驱动单元的螺旋桨上的流体动力。为了评估吊舱式驱动系统的推进性能,采用了雷诺平均纳维斯托克斯(RANS)求解器。该方法首先由具有不同轮毂锥角的单个螺旋桨进行了验证。通过数值方法获得的螺旋桨性能曲线已与实验结果进行了比较和验证。在下一步中,该方法已扩展到用于拉出器和推动器配置的豆荚式驱动单元。荚状驱动器的偏航角设置为-30°至+ 30°,以5°为增量。推进特性(包括螺旋桨的扭矩和推力,单元的轴向力和侧向力)是前进速度比和偏航角的函数。计算结果与可用的实验数据进行比较。最后,表明在实验测量和本数值方法的结果之间有很好的一致性。

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