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Experimental investigation the turbulent kinetic energy and the acoustic field in a rectangular jet impinging a slotted plate

机译:实验研究湍流动能和冲击槽板的矩形喷射中的声场

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摘要

Ventilation systems are of vital importance for buildings, not only to provide acceptable thermal conditions and air quality for occupants, but also with regards to energy usage. Impinging jets can be encountered in many ventilation strategies which have major impacts on the acoustic environment and energy performance. The self-sustaining tones can be generated in such applications where a feedback loop is installed in the system. This phenomenon is explained by the corollary of Howe who shows that the origin of noise in such configurations can be attributed to fluid rotations. Howe highlights the role of phase conditions between the vorticity. the velocity of the flow and the acoustic velocity for the optimization of energy transfers between the turbulent kinetic energy and the sound field. In this work, we use 2D-PIV technique and a microphone respectively to measure the kinematic fields simultaneously with the acoustic generation for a rectangular jet impinging on a slotted plate. This study aims to investigate the transfers between the turbulent kinetic energy and the sound field for two Reynolds numbers presenting a high and a low noise levels. It is shown that phase conditions are necessary for the optimization of energy transfer which allows the installation of the self-sustained loop in the flow. It was found also that the change of the aerodynamic mode which is directly related to the self-sustained frequency amplifies the sound intensity and promotes the transfer of energy to the acoustic field.
机译:通风系统对建筑物至关重要,不仅可以为占用者提供可接受的热情和空气质量,而且还对能源使用而言。在许多通风策略中可能会遇到撞击喷气机,这对声学环境和能源性能产生了重大影响。可以在系统中安装反馈循环的这种应用中生成自维持音调。这种现象是由Howe的推论来解释,他们表明这种配置中的噪声起源可以归因于流体旋转。 HOWE突出了涡旋之间的相条件的作用。流动的速度和用于优化湍流动能和声场之间的能量转移的声速度。在这项工作中,我们使用2D-PIV技术和麦克风,分别与冲击在开槽板上的矩形射流的声学同时测量运动场。本研究旨在研究湍流动能和呈现高噪声水平的两个雷诺数的湍流动能和声场之间的转移。结果表明,相位条件是优化能量传递所必需的,这允许在流中安装自持环。发现还发现,与自持续频率直接相关的空气动力学模式的变化放大声强度并促使能量转移到声场。

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