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Experimental study on critical heat flux of steady boiling for high-velocity slot jet impinging on the stagnation zone

机译:高速槽缝射流撞击滞流区的稳态沸腾临界热通量实验研究

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In this paper, the critical heat flux (CHF) of high-velocity slot jet impinging on the stagnation zone under saturated boiling and subcooled boiling were investigated experimentally. Two non-dimensional semi-theoretical and semi-empirical correlations to predict the CHF under saturated and subcooled boiling conditions were proposed from experimental data respectively. The mechanism of the subcooling and impact velocity effect on the CHF of jet impinging under steady boiling conditions were quantitatively explained. The high impact velocity has been observed to affect the CHF by two means. On one hand, the jet flow breaks through the vapor layer and brings fresh fluid, which always plays a role in strengthening the CHF. On the other hand, the high-velocity causes an increase of wall stagnation pressure, which will increase the CHF initially. When the wall stagnation pressure approaches 1/3 of the critical value, the CHF turns to decrease gradually. According to this trend, there should exist an ultimate CHF of steady boiling for jet impinging on the stagnation zone. The concepts of ultimate impact velocity and corresponding ultimate CHF are also obtained from the theoretical analysis.
机译:本文研究了高速槽缝射流在饱和沸腾和过冷沸腾下撞击停滞区的临界热通量(CHF)。分别从实验数据中提出了两种在饱和和过冷沸腾条件下预测CHF的无因次半理论和半经验关系式。定量解释了在稳态沸腾条件下过冷和撞击速度对射流CHF的影响机理。已经观察到高冲击速度通过两种方式影响CHF。一方面,射流穿透蒸汽层并带入新鲜流体,这始终在增强CHF中发挥作用。另一方面,高速导致壁停滞压力增加,这将首先增加CHF。当壁的滞止压力接近临界值的1/3时,CHF逐渐减小。根据这一趋势,应该有一个稳定沸腾的终极CHF,以使射流撞击停滞区。极限冲击速度和相应的极限CHF的概念也可以从理论分析中获得。

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