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Selection of a Suitable Wall Pressure Spectrum Model for Estimating Flow-Induced Noise in Sonar Applications

机译:用于估算声纳应用中的流致噪声的合适壁压谱模型的选择

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摘要

Flow-induced structural noise of a sonar dome in which the sonar transducer is housed, constitutes a major source of self-noise above a certain speed of the vessel. Excitation of the sonar dome structure by random pressure fluctuations in turbulent boundary layer flow leads to acoustic radiation into the interior of the dome. This acoustic radiation is termed flow-induced structural noise. Such noise contributes significantly to sonar self-noise of submerged vessels cruising at high speed and plays an important role in surface ships, torpedos, and towed sonars as well. Various turbulent boundary layer wall pressure models published were analyzed and the most suitable analytical model for the sonar dome application selected while taking into account high frequency, fluid loading, low wave number contribution, and pressure gradient effects. These investigations included type of coupling that exists between turbulent boundary layer pressure fluctuations and dome wall structure of a typical sonar dome. Comparison of theoretical data with measured data onboard a ship are also reported.
机译:装有声纳换能器的声纳穹顶的流动引起的结构噪声构成了高于特定速度的船舶的自噪声的主要来源。湍流边界层流动中的随机压力波动激发声纳圆顶结构会导致声辐射进入圆顶内部。这种声辐射称为流动引起的结构噪声。这种噪声极大地导致了水下航行器高速巡航的声纳自噪声,并且在水面舰艇,鱼雷和拖曳声纳中也起着重要作用。分析了各种已发布的湍流边界层壁压力模型,并在考虑了高频,流体载荷,低波数贡献和压力梯度效应的情况下,选择了最适合声纳圆顶应用的分析模型。这些研究包括湍流边界层压力波动与典型声纳圆顶的圆顶壁结构之间存在的耦合类型。还报告了理论数据与船上测量数据的比较。

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