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Application of particle image velocimetry measurement techniques to study turbulence characteristics of oscillatory flows around parallel-plate structures in thermoacoustic devices

机译:应用粒子图像测速技术研究热声器件中平行板结构周围振荡流的湍流特性

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This paper describes the development of the experimental setup and measurement methodologies to study the physics of oscillatory flows in the vicinity of parallel-plate stacks by using the particle image velocimetry (PIV) techniques. Parallel-plate configurations often appear as internal structures in thermoacoustic devices and are responsible for the hydrodynamic energy transfer processes. The flow around selected stack configurations is induced by a standing acoustic wave, whose amplitude can be varied. Depending on the direction of the flow within the acoustic cycle, relative to the stack, it can be treated as an entrance flow or a wake flow. The insight into the flow behaviour, its kinematics, dynamics and scales of turbulence, is obtained using the classical Reynolds decomposition to separate the instantaneous velocity fields into ensemble-averaged mean velocity fields and fluctuations in a set of predetermined phases within an oscillation cycle. The mean velocity field and the fluctuation intensity distributions are investigated over the acoustic oscillation cycle. The velocity fluctuation is further divided into large- and small-scale fluctuations by using fast Fourier transform (FFT) spatial filtering techniques.
机译:本文介绍了使用粒子图像测速技术(PIV)来研究平行板叠堆附近的振荡流物理现象的实验装置和测量方法的发展。平行板结构通常在热声设备中显示为内部结构,并负责流体动力传递过程。选定的堆栈配置周围的流动是由驻波引起的,驻波的幅度可以改变。根据声波循环内流动的方向,相对于烟囱,可将其视为入口流或尾流。使用经典的雷诺分解将瞬时速度场分离为整体平均速度场和振荡周期内一组预定相位的波动,从而可以深入了解流动特性,运动学,动力学和湍流尺度。研究了整个声振荡周期的平均速度场和波动强度分布。通过使用快速傅里叶变换(FFT)空间滤波技术,速度波动进一步分为大范围和小范围波动。

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