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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Numerical analysis of propeller loading with a coupling RANS and potential approach
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Numerical analysis of propeller loading with a coupling RANS and potential approach

机译:具有耦合RAN的螺旋桨装载的数值分析及潜在方法

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摘要

In this paper, we present a coupling potential and Reynolds-averaged Navier-Stokes (RANS) approach for the analysis of propeller loading and propulsion performance at self-propulsion condition. There is a presentation of a combination of unsteady RANS method for ship flow with free surface taking into account by volume of fluid method and Lifting Line Model for propeller operating behind ship. An intensified coupling strategy is proposed to simulate the propeller effect in the ship wake. The effective wake is re-examined through the iterations, and there is a presentation of the spatial distribution of propeller forces. Propeller unsteady loading of KCS test case is predicted by flow field from both Full RANS and the Coupling method and compared to experiment results. A circulation-based analysis is made to scrutinize the spatial distribution of propeller loading. The simulation results prove that the coupling method can estimate propeller's loading and effect on averaged flow field. Ultimately, the coupling method is applied to design an optimal propeller accounting for hull-propeller interaction, which shows its potential for further integrated optimization application.
机译:在本文中,我们介绍了一种耦合潜力和雷诺平均Navier-Stokes(RANS)方法,用于分析自推进条件下的螺旋桨载荷和推进性能。介绍了船舶流量的非稳态RAN方法的组合,以考虑到船舶后螺旋桨的流体方法和升降线模型的体积。提出了强化耦合策略来模拟船舶唤醒中的螺旋桨效果。通过迭代重新检查有效唤醒,并且存在螺旋桨力的空间分布的呈现。 Propeller不稳定加载KCS测试案例是通过Fluar RAN和耦合方法的流场预测的,并与实验结果相比。基于循环的分析仔细地审查了螺旋桨载荷的空间分布。仿真结果证明,耦合方法可以估算螺旋桨的装载和对平均流场的影响。最终,应用耦合方法来设计用于船体螺旋桨相互作用的最佳推进器算法,其显示其进一步集成优化应用的可能性。

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