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Integral formulations for the prediction of low Mach number flow noise with non-compact solid surfaces.

机译:具有非紧凑型固体表面的低马力数流动噪声预测的整体制剂。

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To assess the aeroacoustic noise, Lighthill's equation remains the most widely used acoustic analogy, especially because of its tractable numerical implementation and physically appealing interpretations. The use of its integral form is particularly justified for low Mach number flows. In the presence of a solid obstacle, the mere knowledge of the incompressible-flow surface pressure fluctuations is sufficient to provide a good estimation of the radiated sound as long as the wavelength is large compared to the dimension of the problem. In practice, obstacles can be non-compact or become so for sufficiently high frequencies and the previous observation has to be reassessed. In order to deal with non-compact surfaces, an alternative form of Lighthill's integral equation is presented. These simplified and approximate formulations are interesting from a numerical point of view as they do not necessitate the calculation of Lighthill's stress tensor. Numerical predictions compare favorably with experimental data for the specific cases of a diaphragm and a flap inserted in a rectangular duct.
机译:为了评估空气声噪声,Lighthill的等式仍然是最广泛使用的声学类比,特别是因为它的易于数值实现和物理上吸引人的解释。对于低马赫数流,使用其整体形式的使用特别合理。在存在固体障碍物的情况下,只要波长与问题的尺寸相比,只要波长大,就可以提供对不可压缩流动表面压力波动的知识足以提供辐射声音的良好估计。在实践中,障碍物可以是非紧凑的或变得如此,对于足够高的频率,并且必须重新评估先前的观察。为了处理非紧凑的表面,提出了一种替代形式的Lighthill的整体方程。这些简化和近似的配方来自数值观点​​,因为它们不需要计算灯灰的压力张量。数值预测比较有利地与膜片的特定情况和插入矩形管道中的翼片的实验数据比较。

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