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Boiling Heat Transfer From an Array of Round Jets With Hybrid Surface Enhancements

机译:来自具有混合表面增强功能的圆形喷嘴阵列的沸腾传热

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The effect of a variety of surface enhancements on the heat transfer achieved with an array of impinging jets is experimentally investigated using the dielectric fluid HFE-7100 at different volumetric flow rates. The performance of a 5×5 array of jets, each 0.75 mm in diameter, is compared to that of a single 3.75 mm diameter jet with the same total open orifice area, in single-and two-phase operation. Four different target copper surfaces are evaluated: 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; area-averaged heat transfer and pressure drop measurements are reported. The array of jets enhances the single-phase heat transfer coefficients by 1.13-1.29 times and extends the critical heat flux (CHF) on all surfaces compared to the single jet at the same volumetric flow rates. Additionally, the array greatly enhances the heat flux dissipation capability of the hybrid coated pin-fin surface, extending CHF by 1.89-2.33 times compared to the single jet on this surface, with a minimal increase in pressure drop. The jet array coupled with the hybrid enhancement dissipates a maximum heat flux of 205.8 W/cm~2 (heat input of 1.33 kW) at a flow rate of 1800 mi/min (corresponding to a jet diameter-based Reynolds number of 7800) with a pressure drop incurred of only 10.9 kPa. Compared to the single jet impinging on the smooth flat surface, the array of jets on the coated pin-fin enhanced surface increased CHF by a factor of over four at all flow rates.
机译:使用介电液HFE-7100在不同的体积流量下,实验研究了一系列表面增强对通过一系列射流实现的传热的影响。在单相和两相操作中,将直径为0.75 mm的5×5喷嘴阵列的性能与具有相同总开口面积的单个3.75 mm直径的喷嘴的性能进行比较。评估了四个不同的目标铜表面:基线光滑的平坦表面,涂有微孔层的平坦表面,具有大面积扩大的表面(扩展的方形销状鳍片)以及在其上涂覆有销状鳍片的混合表面。微孔层;报告了平均面积传热和压降测量。与相同体积流量下的单喷嘴相比,喷嘴阵列将单相传热系数提高了1.13-1.29倍,并在所有表面上扩展了临界热通量(CHF)。此外,该阵列极大地增强了混合涂层针翅式表面的热通量消散能力,与该表面上的单喷头相比,CHF扩展了1.89-2.33倍,而压降增加却最小。结合了混合增强技术的射流阵列以1800 mi / min的流速(对应于基于射流直径的雷诺数7800)消散了205.8 W / cm〜2的最大热通量(1.33 kW的热输入),压降仅为10.9 kPa。与撞击在光滑平面上的单个喷射流相比,在所有流速下,涂覆的针状鳍片增强表面上的喷射流阵列将CHF增大了四倍以上。

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