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Experimental and theoretical study of surface cooling using a single microjet

机译:使用单微喷进行表面冷却的实验和理论研究

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The experimental research of heat transfer due to impingement of a single microjet of water and air has been studied on a specially designed rig. Systematic data on radial wall temperature distribution were collected, which enabled development of empirical correlation for heat transfer coefficient applicable both for air and water flows. Two microjet nozzle diameters were studied, i.e. 180 and 260 μm. The correlation describing the heat transfer coefficient was later used in validation of a model of a single microjet impinging on a flat plate, developed earlier by the authors. Such analytical model of microjet is of a great value in future analysis as it enables to carry out for example sensitivity tests or to appropriately select operational parameters. The presented model is quite general and its further modifications are possible when some of the imposed assumptions are relaxed. More experiments on the structure of a single microjet are needed which will confirm the correlation presented in the paper.
机译:在专门设计的钻机上对由于水和空气的单个微喷射流撞击而引起的传热的实验研究进行了研究。收集了有关径向壁温度分布的系统数据,这有助于开发适用于空气和水流的传热系数的经验相关性。研究了两种微型喷嘴直径,即180和260μm。作者在之前开发的描述传热系数的相关性随后被用于验证撞击在平板上的单个微射流的模型。这种微喷射分析模型在将来的分析中具有很大的价值,因为它能够进行例如敏感性测试或适当选择操作参数。所提出的模型相当笼统,并且当某些施加的假设被放宽时,可以对其进行进一步的修改。需要对单个微型喷嘴的结构进行更多的实验,这将证实本文中提出的相关性。

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