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Towards enabling time-resolved measurements of turbulent convective heat transfer maps with IR thermography and a heated thin foil

机译:力求通过红外热像仪和加热的薄箔片实现时间分辨的湍流对流传热图测量

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摘要

The temperature of a heated foil, exposed to a turbulent flow, changes continuously in time due to the fluctuation of the convective heat transfer coefficient. Measuring with enough temporal resolution the foil temperature map and solving the unsteady energy balance of the foil can allow restoring the instantaneous value of the convective heat transfer coefficient. Nevertheless, the high characteristic frequencies of turbulent flows (especially in air) result in very small temperature fluctuations, which are typically hard to measure with an infrared camera. This work presents a novel filtering approach based on Proper Orthogonal Decomposition which allows to dramatically reduce the measurement random noise, thus enabling the detection of small temperature fluctuations and, as a consequence, to improve the estimate of instantaneous distributions of the convective heat transfer coefficient. The proposed methodology is tested on synthetic jets impinging on a foil, actuated with a loudspeaker at various actuation frequencies. The measurement capabilities of the present technique are assessed through comparison with measurements obtained from raw data and phase averaged measurements.
机译:由于对流传热系数的波动,暴露于湍流中的加热箔的温度随时间连续变化。以足够的时间分辨率测量箔片温度图并解决箔片的不稳定能量平衡可以恢复对流传热系数的瞬时值。然而,湍流(特别是在空气中)的高特征频率会导致非常小的温度波动,这通常很难用红外热像仪测量。这项工作提出了一种基于适当正交分解的新颖滤波方法,该方法可以显着降低测量随机噪声,从而能够检测出较小的温度波动,从而改善对流传热系数瞬时分布的估计。所提议的方法在撞击在箔片上的合成射流上进行了测试,并由扬声器以各种致动频率致动。通过与从原始数据获得的测量值和相位平均测量值进行比较,来评估本技术的测量能力。

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