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Heat transfer of impinging jet array with web-patterned grooves on nozzle plate

机译:喷嘴板上用纤维网状凹槽撞击喷射阵列的传热

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摘要

Heat transfer performances of the impinging jet arrays issued from the nozzle plates without and with the two types of the interconnected grooves were experimentally studied at jet Reynolds numbers (Re-j) and nozzle-to-plate distances (S) in the respective ranges of 1500-20,000 and 0.1-8 times of the nozzle diameters (d(j)). Owing to the significant spent flow confinement formulated between the smooth nozzle plate and the impinging surface at S/d(j) 0.3, the mechanism of heat transfer enhancement (HTE) relevant to the impinging jet array was considerably suppressed. The relaxation of spent flow confinement by imprinting the web-patterned grooves on the nozzle plate at the small S/d(j) effectively resumed the HTE characteristic in association with the impinging jet array. At large S/d(j), the additive ambient fluid entrainment from the grooves enriched the jet momentum to boost the heat transfer level from that produced by the smooth nozzle plate. Both the Nusselt number level and the heat transfer uniformity for the smooth and grooved nozzle plates were comparatively studied with the Re-j and S/d(j )effects examined. In conformity with the experimental observations for the isolated and coupled Re-j and S/d(j) effects, the regression-type analysis was performed to generate a set of empirical correlations that permitted the evaluation of the average Nusselt number (Nu) over the central jet region for each of the present impinging jet arrays. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在射流雷诺数(RE-J)和各个范围内的喷嘴雷诺数(RE-J)和喷嘴到板距离的实验研究了从喷嘴板发出的撞击喷射阵列的撞击射流阵列的传热性能。喷嘴直径的1500-20,000和0.1-8倍(D(J))。由于在S / D(j)<0.3处的撞击表面之间配制的显着的流量限制,与撞击喷射阵列相关的传热增强(HTE)的机制得到大大抑制。通过在小S / D(J)处的喷嘴板上的幅材图案化凹槽在小S / D(J)上的纤维板上有效地恢复了与撞击喷射阵列相关联的HTE特性来弛豫。在大的S / D(J)中,从凹槽中夹带的添加剂环境流体夹带富集动量以使来自光滑喷嘴板产生的热传递水平升高。使用RE-J和S / D(J)效应,对光滑和带槽喷嘴板的露珠数水平和传热均匀性均进行检查。符合孤立和耦合的RE-J和S / D(j)效应的实验观察,进行了回归型分析以产生一组经验相关性,允许评估平均NUSESER号码(NU)结束用于每个当前撞击喷射阵列的中央喷射区域。 (c)2019 Elsevier Ltd.保留所有权利。

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