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首页> 外文期刊>International Journal of Multiphase Flow >Dynamic pressure based prediction of spray cooling heat transfer coefficients
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Dynamic pressure based prediction of spray cooling heat transfer coefficients

机译:基于动态压力的喷雾冷却传热系数预测

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摘要

An important goal of spray cooling research is the ability to predict local heat transfer from the spray hydrodynamics. It is postulated that the local normal pressure exerted by the spray onto the heated surface can be used to obtain the local heat transfer coefficient. This hypothesis was tested using data obtained from hollow cone, full cone, and linear sprays at four nozzle pressures and three stand-off distances. A correlation between the pressure and heat transfer coefficient was determined from the data, then used to "predict" the heat transfer coefficient to verify the accuracy of the correlation. The area averaged heat transfer coefficient could be predicted within 25%, indicating that pressure can be used to predict the local heat transfer coefficient in the single-phase regime.
机译:喷雾冷却研究的重要目标是能够根据喷雾流体动力学预测局部传热。假定通过喷雾施加到加热表面上的局部法向压力可用于获得局部传热系数。使用从空心锥,全锥和线性喷雾在四个喷嘴压力和三个支座距离处获得的数据测试了该假设。根据数据确定压力与传热系数之间的相关性,然后将其用于“预测”传热系数以验证相关性的准确性。可以将面积平均传热系数预测在25%以内,这表明可以使用压力来预测单相状态下的局部传热系数。

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