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Investigation of the flow field around a propeller-rudder configuration: on-surface pressure measurements and velocity-pressure-phase-locked correlations

机译:螺旋桨-舵构型周围流场的研究:表面压力测量和速度-压力-相位锁定相关性

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摘要

The present paper deals with the problem of the propeller induced perturbation on the rudder . The study aims at providing insights on the key mechanisms governing the complex interaction between the propeller wake structures and the rudder. In this regard, a wide experimental activity that concerned PIV and LDV velocity measurements and wall-pressure-measurements on the two faces of the rudder was performed in a cavitation tunnel. The major flow features that distinguish the flow field around a rudder operating in the race of a propeller, were highlighted, such as the complex dynamics of the propeller tip votices and the re-storing mechanism of the tip vortex downstream of the rudder. Wall-pressure signals were Fourier decomposed and, then, reconstructed isolating the contributions of the more energetic harmonics when both the propeller phase and the rudder deflection change.
机译:本文研究了螺旋桨在舵上引起的扰动问题。这项研究旨在提供有关控制螺旋桨尾流结构和舵之间复杂相互作用的关键机制的见解。在这方面,在空化隧道中进行了涉及舵的两个面上的PIV和LDV速度测量和壁压测量的广泛实验活动。突出显示了区分在螺旋桨竞赛中运行的舵周围流场的主要流动特征,例如螺旋桨叶尖涡流的复杂动力学以及叶尖下游涡流的重新储存机制。壁压力信号被傅立叶分解,然后在螺旋桨相位和方向舵偏转都发生变化时重构,以隔离更多高能谐波的贡献。

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