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Impact of Cubic Pin Finned Surface Structure Geometry upon Spray Cooling Heat Transfer

机译:立方钉翅片表面结构几何形状对喷雾冷却传热的影响

摘要

Experiments were conducted to study the effects of enhanced surface structures on heat flux using spray cooling. The surface enhancements consisted of cubic pin fins machined on the top surface of copper heater blocks. The structure height, pitch, and width were parametrically vaned. Each copper block had a projected cross-sectional area of 2.0 sq cm. Measurements were also obtained on a heater block with a flat surface for baseline comparison purposes. A 2 x 2 nozzle array was used with PF-5060 as the working fluid. Thermal performance data were obtained under nominally degassed (chamber pressure of 41.4 kPa) and gassy conditions (chamber with N2 gas at 100.7 kPa) with a bulk fluid temperature of 20.5 C. Results for both the degassed and gassy cases show that structure width and separation distance have a dominant effect upon the heat transfer for the size ranges used. Cubic pin fin height had little impact upon heat flux. The maximum critical heat flux (CHF) attained for any of the surfaces was 121 W/sq cm, giving an enhancement of 51% relative to the flat surface case under nominally degassed conditions. The gassy case had a maximum CHF of 149 W/sq cm, giving an enhancement of 38% relative to the flat surface case.
机译:进行实验以研究使用喷雾冷却的增强表面结构对热通量的影响。表面增强包括在铜制加热块顶面上加工的立方针状翅片。结构的高度,间距和宽度已参数化。每个铜块的投影横截面积为2.0平方厘米。还可以在具有平坦表面的加热块上进行测量,以进行基线比较。将2 x 2喷嘴阵列与PF-5060一起用作工作流体。热性能数据是在标称脱气(室压为41.4 kPa)和气体条件(带N2气体为100.7 kPa的室)和整体流体温度为20.5 C的条件下获得的。脱气和气体状态的结果均表明结构宽度和分离度在所使用的尺寸范围内,距离对传热起主要作用。立方柱状翅片的高度对热通量影响很小。任何表面达到的最大临界热通量(CHF)为121 W / sq cm,相对于标称脱气条件下的平坦表面而言,提高了51%。气态外壳的最大CHF为149 W / sq cm,相对于平坦外壳而言,提高了38%。

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