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首页> 外文期刊>Ocean Engineering >Modal decomposition method in rectangular ducts in a test-section of a cavitation tunnel with a simultaneous estimate of the effective wall impedance
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Modal decomposition method in rectangular ducts in a test-section of a cavitation tunnel with a simultaneous estimate of the effective wall impedance

机译:矩形管道中的矩形分解方法,在空化隧道的试验部分,同时估计有效壁阻抗

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摘要

The operational requirements for naval and research vessels have seen an increasing demand for quieter ships either to comply with the ship operational requirements or to minimize the influence of shipping noise on marine life. The radiated noise of a ship is estimated during the design stage by measurements with a scale model, generally realized in a tunnel or a depressurized tank. DGA Hydrodynamics owns its cavitation tunnel with low background noise that allows such measurements. Nowadays, a low background noise of the whole facility is not sufficient to perform an accurate acoustic measurement. Improving our knowledge about the acoustic response of the facility is then required to assess the relationship between the measurements and the noise radiated by a propeller for example. The confined geometry of the test-section imposes particular boundary conditions to the acoustic propagation and a reverberation-like behaviour. The acoustic response of the facility is then disturbed compared to a free-field configuration. This particular acoustic behaviour makes the absolute estimate of the underwater radiated noise power very difficult. A possibility to overcome this problem could be the use of an appropriated model coupled with the modal propagation theory. Following this approach, a method to estimate both modal magnitudes and wall impedance is proposed in this paper and confronted to experimental results.
机译:海军和研究船舶的运营要求已经越来越大的需求,可以遵守船舶运营要求,或者最大限度地减少海洋生物对海洋生物的影响。通过用尺度模型的测量在设计阶段期间估计船的辐射噪声,通常在隧道或减压罐中实现。 DGA流体动力学拥有其空化隧道,具有低背景噪声,允许此类测量值。如今,整个设施的低背景噪声不足以执行精确的声学测量。然后需要提高我们关于设施的声反应的知识,以评估测量和由螺旋桨辐射的噪声之间的关系。测试部分的狭窄几何形状对声学传播和混响的行为施加了特定的边界条件。然后,与自由场配置相比,该设施的声反应被干扰。这种特殊的声学行为使得水下辐射噪声功率的绝对估计非常困难。克服该问题的可能性可以是使用与模态传播理论耦合的互换模型。在这种方法之后,在本文中提出了一种估计模态幅度和壁阻抗的方法,并面对实验结果。

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