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Confined Jet Impingement With Boiling on a Variety of Enhanced Surfaces

机译:在各种增强表面上沸腾的受限射流冲击

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Confined jet impingement with boiling offers unique and attractive performance characteristics for thermal management of high heat flux components. Two-phase operation of jet impingement has been shown to provide high heat transfer coefficients while maintaining a uniform temperature over a target surface. This can be achieved with minimal increases in pumping power compared to single-phase operation. To investigate further enhancements in heat transfer coefficients and increases in the maximum heat flux supported by two-phase jet impingement, an experimental study of surface enhancements is performed using the dielectric working fluid HFE-7100. The performance of a single, 3.75 mm-diameter jet orifice is compared across four distinct copper target surfaces of varying enhancement scales: a baseline smooth flat surface, a flat surface coated with a microporous layer, a surface with macroscale area enhancement (extended square pin fins), and a hybrid surface on which the pin fins are coated with the microporous layer. The heat transfer performance of each surface is compared in single- and two-phase operation at three volumetric flow rates (450ml/min, 900ml/min, and 1800 ml/min); area-averaged heat transfer parameters and pressure drop are reported. The mechanisms resulting in enhanced performance for the different surfaces are identified, with a special focus on the coated pin fins. This hybrid surface showed the best enhancement of all those tested, and resulted in an extension of critical heat flux (CHF) by a maximum of 2.42 times compared to the smooth flat surface at the lowest flow rate investigated; no increase in the overall pressure drop was measured.
机译:受限的沸腾射流为高热通量组件的热管理提供了独特而诱人的性能特征。射流冲击的两相操作已显示出高传热系数,同时在目标表面上保持均匀的温度。与单相运行相比,可以在泵浦功率增加最少的情况下实现这一点。为了研究传热系数的进一步增强和两相射流冲击所支持的最大热通量的增加,使用介电工作液HFE-7100进行了表面增强的实验研究。在具有不同增强比例的四个不同铜靶表面上比较了一个直径为3.75 mm的单个喷孔的性能:基线平滑平面,涂有微孔层的平面,具有宏观面积增强的表面(扩展的方形销)鳍片)和混合表面,针状鳍片上涂有微孔层。在三个体积流量(450ml / min,900ml / min和1800 ml / min)的单相和两相操作中,比较了每个表面的传热性能。报告了平均面积传热参数和压降。确定了导致不同表面性能增强的机制,并特别关注了涂层的针状鳍片。这种混合表面在所有测试中表现出最好的增强效果,并且与最低流量下的光滑平整表面相比,临界热通量(CHF)最多扩展了2.42倍;没有测量总压降的增加。

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