首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >A novel approach for the isolation of the sound and pseudo-sound contributions from near-field pressure fluctuation measurements: analysis of the hydroacoustic and hydrodynamic perturbation in a propeller-rudder system
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A novel approach for the isolation of the sound and pseudo-sound contributions from near-field pressure fluctuation measurements: analysis of the hydroacoustic and hydrodynamic perturbation in a propeller-rudder system

机译:一种隔离近场压力波动测量中的声音和伪声音贡献的新方法:螺旋桨-舵系统中的水声和水动力扰动分析

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摘要

The main scope of the present work is to investigate the mechanisms underlying the hydroacoustic and hydrodynamic perturbations in a rudder operating in the wake of a free running marine propeller. The study consisted of detailed near-field pressure fluctuation measurements which were acquired on the face and back surfaces of the rudder, at different deflection angles. To this aim, a novel wavelet-filtering procedure was applied to separate and analyze distinctly the acoustic and hydrodynamic components of the recorded near-field pressure signals. The filtering procedure undertakes the separation of intermittent pressure peaks induced by the passage of eddy structures, interpreted as pseudo-sound, from homogenous background fluctuations, interpreted as sound. The use of wavelet in the filtering procedure allows to overcome the limitations of the earlier attempts based on frequency (wave number) band-pass filtering, retrieving the overall frequency content of both the acoustic and the hydrodynamic components and returning them as independent signals in the time domain. Acoustic and hydrodynamic pressure distributions were decomposed harmonically and compared to the corresponding topologies of the vorticity field, derived from earlier LDV measurements performed by Felli and Falchi (Exp Fluids 51(5):1385–1402, 2011). The study highlighted that the acoustic perturbation is mainly correlated with the unsteady load variations of the rudder and to the shear layer fluctuations of the propeller streamtube. Conversely, the dynamics of the propeller tip and hub vortices underlies the hydrodynamic perturbation.
机译:本工作的主要范围是研究在自由运转的船舶螺旋桨之后运行的舵中的水声和水动力扰动的机理。该研究包括详细的近场压力波动测量,这些测量是在舵的正面和背面以不同的偏转角获得的。为此,采用了一种新颖的小波滤波程序来分离和清晰地分析所记录的近场压力信号的声学和流体动力成分。过滤过程将由涡流结构(被解释为伪声音)的感应所引起的间歇性压力峰值与被解释为声音的均匀背景波动分离开来。在滤波过程中使用小波可以克服基于频率(波数)带通滤波的早期尝试的局限性,获取声学和流体动力成分的总频率含量,并将它们作为独立信号返回到时域。声学和流体动力压力分布被谐波分解,并与涡旋场的相应拓扑结构进行了比较,该拓扑结构是由Felli和Falchi进行的早期LDV测量得出的(Exp Fluids 51(5):1385–1402,2011)。研究强调,声学扰动主要与舵的非稳态载荷变化以及螺旋桨流管的剪切层波动有关。相反,螺旋桨叶尖和轮毂涡流的动力学是流体动力扰动的基础。

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