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首页> 外文期刊>Journal of thermal analysis and calorimetry >Numerical analysis of transport in porous media to reduce aerodynamic noise past a circular cylinder by application of porous foam
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Numerical analysis of transport in porous media to reduce aerodynamic noise past a circular cylinder by application of porous foam

机译:多孔介质减少空气动力学噪声的多孔介质运输数值分析通过应用多孔泡沫

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Metal foams as porous media have very high porosity and good strength. These materials could easily be applied to exterior surfaces of metals used in different industries. Porous media have been used less in the external flows to control the wake region or reduce the generated sound in high-speed flows. In this study, a numerical investigation is done to explore the effect of different characteristics of a porous medium-such as PPI and porosity or porous coating thickness-on the sound generated by a porous-coated cylinder. The governing transport equations in the clear and porous regions are solved using 3D Navier-Stokes and non-Darcy equations, respectively, and employing the large eddy simulation turbulence model. The generated noise is estimated using the Ffowcs-Williams and Hawkings model at the observer location. The results show that use of porous media could considerably reduce the aerodynamic noise provided that its characteristics are selected precisely. For example, results show that a porous-coated cylinder with PPI = 40 has about 30 dB higher overall sound pressure level (OASPL) than one with PPI = 10 with the same porosity and thickness. Same conditions are also observed about the thickness of the coating. The results indicate that an optimal thickness exists for which the OASPL is minimal. For example, porous-coated cylinders with coating thickness of 5 and 15 mm have about 25 dB higher OASPL compared to a cylinder with the coating thickness of 10 mm.
机译:金属泡沫作为多孔介质具有非常高的孔隙率和良好的强度。这些材料很容易应用于不同行业中使用的金属的外表面。在外部流动中使用多孔介质以控制唤醒区域或在高速流中减少产生的声音。在该研究中,进行了数值研究以探讨多孔介质的不同特性 - 例如PPI和孔隙率或多孔涂层厚度对由多孔涂覆的圆柱产生的声音的影响。透明和多孔区域中的控制传输方程分别使用3D Navier-Stokes和非达西方程来解决,并采用大涡模拟湍流模型。在观察者位置的FFOWS-WILIAMS和HAWKINGS模型估计生成的噪声。结果表明,提供多孔介质的使用可以显着降低空气动力学噪声,所以提供了其特性。例如,结果表明,具有PPI = 40的多孔涂覆的圆柱体具有比具有相同孔隙率和厚度的PPI = 10的大约30dB的总声压水平(OASPL)。关于涂层的厚度也观察到相同的条件。结果表明,OASPL是最小的最佳厚度。例如,与涂层厚度为10mm的圆柱体相比,具有涂层厚度为5和15mm的多孔涂覆的气缸具有约25dB更高的OASPL。

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