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Propeller tip and hub vortex dynamics in the interaction with a rudder

机译:螺旋桨叶尖和轮毂涡流与舵的相互作用

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摘要

In the present paper, the interaction mechanisms of the vortices shed by a single-screw propeller with a rudder installed in its wake are addressed; in particular, following the works by Felli et al. (Exp Fluids 6(1):1-11, 2006a, Exp Fluids 46(1):147-1641, 2009a, Proceedings of the 8th international symposium on particle image velocimetry: Piv09, Melbourne, 2009b), the attention is focused on the analysis of the evolution, instability, breakdown and recovering mechanisms of the propeller tip and hub vortices during the interaction with the rudder. To investigate these mechanisms in detail, a wide experimental activity consisting in time-resolved visualizations, velocity measurements by particle image velocimetry (PIV) and laser Doppler velocimetry (LDV) along horizontal chordwise, vertical chordwise and transversal sections of the wake have been performed in the Cavitation Tunnel of the Italian Navy. Collected data allows to investigate the major flow features that distinguish the flow field around a rudder operating in the wake of a propeller, as, for example, the spiral breakdown of the vortex filaments, the rejoining mechanism of the tip vortices behind the rudder and the mechanisms governing the different spanwise misalignment of the vortex filaments in the pressure and suction sides of the appendage.
机译:在本文中,解决了单螺旋桨在尾流处装有舵的涡旋作用的相互作用机制。特别是,遵循Felli等人的著作。 (Exp Fluids 6(1):1-11,2006a,Exp Fluids 46(1):147-1641,2009a,第八届国际粒子图像测速研讨会论文集:Piv09,Melbourne,2009b),注意力集中在螺旋桨叶尖和轮毂涡流在与舵相互作用过程中的演化,不稳定性,破坏和恢复机制的分析。为了详细研究这些机制,已进行了广泛的实验活动,包括时间分辨的可视化,通过粒子图像测速(PIV)和激光多普勒测速(LDV)沿着尾流的水平弦向,垂直弦向和横向截面进行速度测量。意大利海军的空化隧道。收集的数据可用于研究区分在螺旋桨尾部运行的方向舵周围流场的主要流动特征,例如,涡流丝的螺旋破裂,方向舵后面的尖端涡流的重新结合机制以及机构控制附件压力和吸力侧涡流丝的不同跨展方向未对准。

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  • 作者

    Felli Mario; Falchi Massimo;

  • 作者单位
  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 en
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