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EXPERIMENTAL INVESTIGATION ON STAGGERED IMPINGEMENT HEAT TRANSFER ON A RIB ROUGHENED PLATE WITH DIFFERENT CROSSFLOW SCHEMES

机译:不同横流方案的肋筋加固板上交错式冲击传热的实验研究

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A nine-by-nine staggered jet array impinging on a flat or rib roughened plate at Reynolds numbers from 15,000 to 35,000 has been studied by the transient liquid crystal method. The jet-to-plate spacings are adjusted to be 3, 4 and 5 jet diameters. Three jet-induced crossflow schemes, referred as minimum, medium and maximum crossflow correspondingly, have been measured. The local air jet temperature is measured at several positions on the impingement plate to account for an appropriate reference temperature of the heat transfer coefficient. The heat transfer results of the rib roughened plate are compared with those of the flat plate. The best heat transfer performance is obtained with the minimum crossflow and narrow jet-to-plate spacing no matter on a flat or roughened plate. The presence of rib turbulators on the target plate produce higher heat transfer coefficients than the flat plate for narrow jet-to-plate spacing by 7.5%. Note that this value is within the measurement uncertainty of 9%.
机译:通过瞬态液晶方法研究了一个九乘九的交错射流阵列,该阵列以雷诺数从15,000到35,000撞击到一块平坦的或肋状的粗糙板上。射流与板的间距调整为3、4和5射流直径。已经测量了三种喷射引起的错流方案,分别称为最小,中和最大错流。在冲击板上的几个位置处测量局部空气喷射温度,以考虑传热系数的适当参考温度。将肋粗糙板的传热结果与平板的传热结果进行比较。无论在平坦的或粗糙的板上,都能以最小的错流和狭窄的射流到板间距获得最佳的传热性能。对于较窄的射流到板间距7.5%,目标板上存在肋湍流器会产生比平板更高的传热系数。请注意,该值在9%的测量不确定度内。

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