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An experimental study of inclination on the boiling heat transfer characteristics of a micro-channel heat sink using HFE-7100

机译:HFE-7100对微通道散热器沸腾传热特性的影响的实验研究

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In this study, the effect of inclination on the two-phase convective boiling heat transfer characteristics of HFE-7100 is investigated experimentally in a multiport micro-channel having a hydraulic diameter of 440 μm. The corresponding mass flux is 100 and 200 kg m~(-2) s~(-1), respectively. The inclinations include -90, -45,0,45, and 90° with respect to the horizon. Test results show that normally the heat transfer coefficient for upward arrangements is superior to those of downward arrangement at a supplied heat flux of 25 kW m~(-2). Yet this is applicable for G = 100 or 200 kg m~(-2) s~(-1). The heat transfer coefficients increase with the vapor quality and peak again at a vapor quality of 0.6, suggesting a controlled mechanism of convective boiling. With the rise of heat flux to 40 kW m~(-2), it appears that nucleate boiling may impose appreciable effect on the heat transfer mechanism. For G = 100 kg m~(-2) s~(-2) the heat transfer coefficients for all arrangements are insensitive to change of vapor quality (x < 0.6), implicating that nucleate boiling is in control. Analogous results prevail for G = 200 kg m~(-2) s~(-1). Six heat transfer correlations are used to predict experimental data in different orientation. It appears that the Kandlikar correlation shows the best predictive ability against the present data with an overall mean deviation of 29.04%.
机译:在这项研究中,在液压直径为440μm的多端口微通道中,通过实验研究了倾斜度对HFE-7100的两相对流沸腾传热特性的影响。相应的质量通量分别为100和200 kg m〜(-2)s〜(-1)。相对于地平线的倾斜角度包括-90,-45、0、45和90°。测试结果表明,在所提供的热通量为25 kW m〜(-2)时,向上布置的传热系数通常优于向下布置的。但这适用于G = 100或200 kg m〜(-2)s〜(-1)。传热系数随蒸气质量而增加,并在蒸气质量为0.6时再次达到峰值,表明对流沸腾的受控机理。随着热通量增加到40 kW m〜(-2),核沸腾可能对传热机理产生明显影响。对于G = 100 kg m〜(-2)s〜(-2),所有布置的传热系数对蒸汽质量的变化不敏感(x <0.6),这意味着成核沸腾受到控制。对于G = 200 kg m〜(-2)s〜(-1),类似的结果普遍存在。六个热传递相关性用于预测不同方向的实验数据。看来,Kandlikar相关性显示出对当前数据的最佳预测能力,总体平均偏差为29.04%。

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