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首页> 外文期刊>Open Journal of Fluid Dynamics >A Numerical Approach to Possible Identification of the Noisiest Zones of a Wall Surface with a Flow Interaction
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A Numerical Approach to Possible Identification of the Noisiest Zones of a Wall Surface with a Flow Interaction

机译:一种数值方法,可以通过流动交互识别墙面中最嘈杂的区域

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style="text-align:justify;"> This paper examines the use of proper orthogonal decomposition (POD) and singular value decomposition (SVD) to identify zones on the surface of the source that contribute the most to the sound power the source radiates. First, computational fluid dynamics (CFD) is used to obtain the pressure field at the surface of the blade in a subsonic regime. Then the fluctuation of this pressure field is used as the input for the loading noise in the Ffowcs Williams and Hawkings (FW&H) acoustic analogy. The FW&H analogy is used to calculate the sound power that is radiated by the blade. Secondly, the most important acoustic modes of POD and SVD are used to reconstruct the radiated sound power. The results obtained through POD and SVD are similar to the acoustic power directly obtained with the FW&H analogy. It was observed that the importance of the modes to the radiated sound power is not necessarily in ascending order (for the studied case, the seventh mode was the main contributor). Finally, maps of the most contributing POD and SVD modes have been produced. These maps show the zones on the surface of the blade, where the dipolar aeroacoustic sources contribute the most to the radiated sound power. These identifications are expected to be used as a guide to design and shape the blade surface in order to reduce its radiated noise.
机译:style =“text-align:证明;”>本文检查了适当的正交分解(pod)和奇异值分解(svd)来识别源源的表面上的区域,对声音产生最大贡献源辐射。首先,计算流体动力学(CFD)用于在亚音速区域中获得刀片表面处的压力场。然后,该压力场的波动被用作FFOCS威廉姆斯和霍普林斯(FW&H)声学类比的装载噪声的输入。 FW&H类比用于计算由刀片辐射的声音。其次,使用最重要的豆荚和SVD的声学模式来重建辐射声功率。通过POD和SVD获得的结果类似于用FW和H类别直接获得的声学功率。观察到,该模式对辐射声功率的重要性不一定是升序(对于所研究的情况,第七模式是主要贡献者)。最后,已经产生了最多贡献的POD和SVD模式的地图。这些地图显示了刀片表面上的区域,其中偶极气动声源对辐射声功率产生最大贡献。这些标识预计将用作设计和塑造叶片表面的指导,以减小其辐射噪声。

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