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首页> 外文期刊>Journal of marine science and technology >A Suggestion Of Gap Flow Control Devices For The Suppression Of Rudder Cavitation
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A Suggestion Of Gap Flow Control Devices For The Suppression Of Rudder Cavitation

机译:间隙控制装置对舵空化的建议

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This paper presents the numerical analysis of rudder cavitation in propeller slipstream and the development of a new rudder system aimed for lift augmentation and cavitation suppression. The new rudder system is equipped with cam devices which effectively close the gap between the horn/pintle and movable wing parts. A computational fluid dynamics code that solves the Reynolds-averaged Navier-Stokes equations is used to analyze the flow field of various rudder systems in propeller slipstream. The body force momentum source terms that mimic flow field behind a rotating propeller are added in the momentum equations to represent the influence of the propeller and its slipstream. For detailed explication of the new rudder system's lift augmentation and cavitation suppression mechanism, three-dimensional flow analysis is carried out. Simulations clearly display the mechanism of the lift augmentation and cavitation suppression. The computational results suggest that the Reynolds-averaged Navier-Stokes-based computational fluid dynamics reproduces the flow field around a rudder in propeller slipstream and that the present concept for a cavitation suppressing rudder system is highly feasible and warrant further study for inclusion of the interaction with hull and mechanical design for manufacturing and operations.
机译:本文介绍了螺旋桨滑流中舵空化的数值分析以及旨在增强升力和抑制空化的新型舵系统的开发。新的舵系统配备了凸轮装置,可有效关闭喇叭/枢轴与可动机翼部件之间的间隙。使用求解雷诺平均Navier-Stokes方程的计算流体力学代码来分析螺旋桨滑流中各种舵系统的流场。在动量方程式中添加了模仿旋转螺旋桨后面的流场的体力动量源项,以表示螺旋桨及其滑流的影响。为了详细说明新舵系统的升力和气穴抑制机理,进行了三维流动分析。仿真清楚地显示了升力增加和气穴抑制的机理。计算结果表明,基于雷诺平均法的基于Navier-Stokes的计算流体动力学再现了螺旋桨滑流中舵周围的流场,并且目前关于气蚀抑制舵系统的概念是高度可行的,值得进一步研究以包括相互作用具有用于制造和运营的船体和机械设计。

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