首页> 外文会议>ASME International Technical Conference and Exhibition on Packaging and Integration of Electronic and Photonic MicroSystems >PARAMETRIC STUDY ON THERMAL AND HYDRAULIC PERFORMANCE OF A HYBRID DOUBLE-SIDE MICRO-JET COOLING SYSTEM
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PARAMETRIC STUDY ON THERMAL AND HYDRAULIC PERFORMANCE OF A HYBRID DOUBLE-SIDE MICRO-JET COOLING SYSTEM

机译:混合双侧微喷射系统的热和水力性能的参数研究

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Numerical analyses have been performed to investigate the thermal and hydraulic performances of a double-side micro-jet cooling system for thermal management of a high power Light Emitting Diodes (LEDs) array. Three-dimensional Reynolds-averaged Navier-Stokes (RANS) equations for the steady incompressible laminar flow and conjugate heat transfer were analyzed through a finite volume solver. A parametric study on the double-side micro-jet configuration has been performed to find the effects of seven geometric variables, i.e., diameter of the jet hole, length of the upper jet hole, length of the lower jet holes, distance from the upper jet exit to substrate, distance from the lower jet exit to substrate, height of the upper plenum, and height of the lower plenum, on the lowest temperature level at the chips and the pressure drop. Consequently, it is concluded that among the design variables, diameter of the micro-jet hole, height of the upper plenum, and height of the lower plenum show relatively large impact on the maximum temperature. The diameter of the micro-jet hole shows the largest impact on the maximum temperature, and height of the upper plenum shows the second highest. The height of the upper plenum shows the largest impact on the pressure drop, and other design variables are all of a sort.
机译:已经进行了数值分析,以研究用于高功率发光二极管(LED)阵列的热管理的双侧微喷射冷却系统的热和液压性能。通过有限体积求解器分析了用于稳定不可压缩层流和缀合物传热的三维雷诺平均天Navier-Stokes(RANS)方程。已经执行了对双面微喷射配置的参数研究,以找到七个几何变量,即喷射孔的直径,上喷射孔的长度,下射流的长度,距上部的距离喷射到基板,从下喷射出口到衬底,上层高度的距离和下层高度的高度,在芯片的最低温度水平和压降上。因此,得出结论,在设计变量,微​​喷射孔的直径,上层高度和下压力线的高度显示对最高温度的相对较大的影响。微射流孔的直径表示对最大温度的最大冲击,上部增压室的高度显示第二高。上层增压室的高度显示对压降的最大影响,其他设计变量是一种排序。

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