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Effect of inclination on the convective boiling performance of a microchannel heat sink using HFE-7100

机译:倾斜度对使用HFE-7100的微通道散热器对流沸腾性能的影响

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摘要

The effect of inclination on the convective boiling heat transfer characteristics of the dielectric fluid HFE-7100 within a multiport microchannel heat sink having a hydraulic diameter of 825μm is studied. The inclinations spans from -90° (vertical downward) to 90° (vertical upward), and a flow visualization is also conducted in this study. It is found that the heat transfer coefficient for the vertical upward and horizontal is comparable, and the heat transfer coefficient for 45° upward considerably exceeds other configurations. On the other hand, the enhancement of heat transfer coefficient under inclined arrangement is reduced with the rise of mass flux. The results also indicate that downward arrangements always impair the heat transfer performance, and more than 50% deterioration of heat transfer coefficient is encountered for G=100kgm~(-2)s~(-1) relative to that of 45° arrangement. The flow visualization confirms that the heat transfer augmentation for upward inclination is due to the rise of slug velocity.
机译:研究了倾斜度对水力直径为825μm的多端口微通道散热器内介电液HFE-7100的对流沸腾传热特性的影响。倾斜范围从-90°(垂直向下)到90°(垂直向上),并且在此研究中还进行了流量可视化。发现垂直向上和水平方向的传热系数是可比较的,并且向上45°的传热系数大大超过其他构造。另一方面,随着质量通量的增加,倾斜布置下的传热系数的增加被减小。结果还表明,向下布置总是会损害传热性能,并且相对于45°布置而言,G = 100kgm〜(-2)s〜(-1)时传热系数会降低50%以上。流动可视化证实,向上倾斜的传热增加是由于段塞速度的上升引起的。

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