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CFD VALIDATION FOR A MARINE PROPELLER USING AN UNSTRUCTURED MESH BASED RANS METHOD

机译:基于非结构化网格的RAN方法的船用推进器的CFD验证

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Results of computational fluid dynamics validation for flow around a marine propeller are presented. Computations were performed for various advance ratios following experimental conditions. The objectives of the study are to propose and verify a hybrid mesh generation strategy, and to validate computational results against experimental data with advanced computational fluid dynamics tools. Computational results for both global and local flow quantities are discussed and compared with experimental data. The predicted thrust and torque are in good agreement with the measured values. The pressure distribution and pathlines on and around the blade surface well reproduce the physics of highly skewed marine propeller flow with tip vortex. The circumferentially averaged velocity components compare well with the measured values, while the velocity and turbulence quantities in the highly concentrated tip vortex region are under-predicted. The overall results suggest that the present approach is practicable for actual propeller design procedures.
机译:介绍了船舶螺旋桨流动的计算流体动力学验证的结果。在实验条件下对各种预先比率进行计算。该研究的目标是提出并验证混合网格生成策略,并验证具有高级计算流体动力学工具的实验数据的计算结果。与实验数据进行了讨论和将全局和局部流量进行计算结果。预测的推力和扭矩与测量值良好。刀片表面上和周围的压力分布和路线良好地再现高度偏斜的船舶螺旋桨流动的物理用尖端涡流。周向平均速度分量与测量值很好地比较,而高浓度尖端涡旋区域中的速度和湍流量是预测的。整体结果表明,目前的方法可用于实际螺旋桨设计程序。

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