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Experimental study on critical heat flux of high-velocity circular jet impingement boiling on the nano-characteristic stagnation zone

机译:纳米特征停滞区高速圆射流沸腾临界热通量的实验研究

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摘要

This experimental study investigates the critical heat flux (CHF) of high-velocity circular jet impingement boiling on the nano-characteristic surface of the stagnation zone with different surface wettability. The wettability of the copper surface is varied to hydrophilic or hydrophobic nano-characteristic surfaces by modifying surface topography and chemistry. The effect of impact velocity, subcooling and solid-liquid contact angle (CA) on the CHF are studied thoroughly. The experimental relationship between CA and CHF of the heat transfer surface is summarized by further discussion. The semi-theoretical correlations proposed by the author previously for predicting the CHF of saturated and subcooled circular jet impingement boiling on the stagnation zone are improved and expanded to higher impact velocity and wider CA range. The comparison results indicate the predicted value of the improved correlations agrees well with the experimental data.
机译:本实验研究了在不同表面润湿性的滞止区纳米特征表面上高速圆形射流撞击沸腾的临界热通量(CHF)。通过改变表面形貌和化学性质,铜表面的润湿性变为亲水性或疏水性的纳米特性表面。深入研究了冲击速度,过冷度和固液接触角(CA)对CHF的影响。通过进一步讨论总结了传热表面的CA和CHF之间的实验关系。作者先前提出的用于预测停滞区上饱和和过冷的圆形射流撞击沸腾的CHF的半理论相关性得到了改善,并扩展到更高的撞击速度和更宽的CA范围。比较结果表明,改进的相关性的预测值与实验数据吻合良好。

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