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Temperature Measurement of a Synthetic Jet Produced by a Helmholtz Cavity

机译:由Helmholtz腔生产的合成喷射的温度测量

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We present preliminary results of the measurement of temperature distribution fields of a synthetic jet produced by a Helmholtz resonant cavity when used for the cooling of an aluminum plate. The plate is set at 80°C and background-oriented schlieren images are registered by a high speed camera at 2000 fps. The background consists of sinusoidal fringes printed on a transparent slide and it is back-illuminated by a matrix of 20 3-W white LEDs. A reference image is taken with no jet and a series of images are then recorded with the cavity working in the first resonance frequency, 125 Hz. The observation region corresponds to an area of 1 × 10 cm~2. Results show an oscillatory behavior of the temperature distribution at the resonant frequency.
机译:当用于冷却铝板时,我们呈现由Helmholtz谐振腔生产的合成射流的温度分布场的测量结果。板位于80°C,并在2000 FPS的高速相机注册了面向背景的Schlieren图像。背景技术由印刷在透明载玻片上的正弦条纹,并且它由20个3-W白色LED的矩阵反馈。参考图像拍摄没有喷射,然后用在第一谐振频率的腔中工作,然后将一系列图像记录为125Hz。观察区域对应于1×10cm〜2的面积。结果显示谐振频率下温度分布的振荡行为。

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