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首页> 外文期刊>Acoustics Australia >The Effects of Hydrophone End-Cap Extension on the Flow-Generated Noise
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The Effects of Hydrophone End-Cap Extension on the Flow-Generated Noise

机译:水听器端盖延长对流动噪声的影响

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Abstract The flow field around a hydrophone generates self-noise which may contaminate the sound-field detection by a hydrophone. Hence, four hydrophone dome models are designed, and the flow field and sound field around them are compared. The RNG k–ε turbulence model is used for steady calculation. The results show that the four models have a fine diversion effect, and there is no obvious vortex and circumfluence because of them. The Curle model is used to simulate the sound source calculation of the hydrophone dome. The leading edge area of each model is found as the main noise source. The large eddy simulation/FW-H hybrid method is applied for the acoustic field calculation. The flow noise around the four models is studied. By summarizing the results of different models, the rules of flow noise around the hydrophone domes are analyzed. The suggestions for the hydrophone dome design are given based on the comprehensive evaluation of the noise generated by each hydrophone dome.
机译:摘要 水听器周围的流场会产生自噪声,可能影响水听器的声场探测。因此,设计了4种水听器圆顶模型,并比较了其周围的流场和声场。RNG k–ε湍流模型用于稳态计算。结果表明:4种模式均具有较好的导流效应,且未因其而产生明显的涡旋和环流。Curle模型用于模拟水听器圆顶的声源计算。每个模型的前缘区域都是主要的噪声源。采用大涡模拟/FW-H混合方法进行声场计算。研究了4个模型周围的流动噪声。通过总结不同模型的结果,分析了水听器穹顶周围的流动噪声规律。在对各水听器圆顶产生的噪声进行综合评估的基础上,给出了水听器圆顶的设计建议。

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