首页> 外文会议>ASME international technical conference and exhibition on packaging and integration of electronic and photonic microsystems >LOCAL THERMAL MEASUREMENTS OF IMPINGING LIQUID JETS WITH AN ANGLED CONFINING WALL FOR POWER ELECTRONICS COOLING
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LOCAL THERMAL MEASUREMENTS OF IMPINGING LIQUID JETS WITH AN ANGLED CONFINING WALL FOR POWER ELECTRONICS COOLING

机译:电力电子冷却中带有倾斜围壁的液体射流撞击的局部热测量

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摘要

The local surface temperature, heat flux, heat transfer coefficient, and Nusselt number were measured for an inline array of circular, normal jets of single-phase, liquid water impinging on a copper block with a common outlet for spent flow, and an experimental 2-D surface map was obtained by translating the jet array relative to the sensors. The effects of variation in jet height, jet pitch, confining wall angle, and average jet Reynolds number were investigated. A strong interaction between the effects of the geometric parameters was observed, and a 5° confining wall was seen to be an effective method of managing the spent flow for jet impingement cooling of power electronics. The maximum average heat transfer coefficient of 13,100W/m~2K and average Nusselt number of 67.7 were measured at an average jet Reynolds number of 14,000.
机译:测量了单列圆形圆形普通射流的直列阵列的液体的局部表面温度,热通量,传热系数和Nusselt值,这些射流撞击在铜块上,该铜块带有一个公用的废液出口,并进行了实验2通过相对于传感器平移射流阵列获得-D表面图。研究了射流高度,射流螺距,围壁角和平均射流雷诺数变化的影响。观察到几何参数的影响之间有很强的相互作用,并且可以看到5°围壁是管理电力电子射流冷却的废流的有效方法。在平均雷诺数为14,000时测得的最大平均传热系数为13,100W / m〜2K,平均努塞尔数为67.7。

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