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Investigation of flow structures involved in sound generation by two- and three-dimensional cavity flows

机译:二维和三维空腔流产生声音的流场研究

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Proper Orthogonal Decomposition and Stochastic Estimation are combined to shed some light on the link between organized flow structures and noise generation by turbulent flows. Proper Orthogonal Decomposition (POD) is firstly used to extract selected flow events. Based on the knowledge of these structures, the Quadratic Stochastic Estimation of the acoustic pressure field is secondly performed. Both procedures are successively applied to two- and three-dimensional numerical databases of a flow over a cavity. It is demonstrated that POD can extract selected aerodynamic events which can be associated with selected frequencies in the acoustic spectra. Reconstructed acoustic fields also indicate the aerodynamic events which are responsible of the main energy of the noise emission. Such mathematical tools offer new perspectives in analysing flow structures involved in sound generation by turbulent flows and in the experimental design of a flow control strategy.
机译:适当的正交分解和随机估计相结合,为有组织的流动结构与湍流产生的噪声之间的联系提供了一些启示。正确的正交分解(POD)首先用于提取选定的流事件。基于这些结构的知识,第二次执行声压场的二次随机估计。两种方法都依次应用于腔体上流动的二维和三维数值数据库。证明了POD可以提取选定的空气动力学事件,这些事件可以与声谱中的选定频率相关联。重建的声场还表明空气动力学事件,这些事件是噪声排放的主要能量。这种数学工具为分析由湍流产生声音的流结构以及流控制策略的实验设计提供了新的视角。

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