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Heat flux effect on the droplet entrainment and deposition in annular flow dryout

机译:热通量对环形流干燥过程中液滴夹带和沉积的影响

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This paper discusses the internal mass transfer process in annular flow dryout. The emphasis is put on the order of magnitude estimation of respective hydrodynamic and thermal mechanisms and the analysis of the heat flux effect on droplet entrainment and deposition. A simple interfacial turbulence model is developed to characterize the turbulence intensity suppression due to interface tension. The heat flux effect on droplet entrainment depends on the competition between the shear force decrease due to vapor effusion and the bubble emission: in low flow condition, the bubble emission outweighs the shear force decrease, thus the net effect is to increase the droplet entrainment; in high flow condition, the situation may reverse. The heat flux impact on droplet deposition is significant only for very fine droplets (less than 1 μm) because of the coupled effect of interface turbulence damping and the radial vapor effusion due to evaporation, but for droplets of medium and large sizes the heat flux effect is negligible. The analysis is then used to develop constitutive equations for droplet entrainment and deposition rates to take into account the interaction between thermal and hydrodynamic mechanisms, which gives improved CHF prediction for limiting quality regime (LQR) CHF experimental data.
机译:本文讨论了环流干燥过程中的内部传质过程。重点放在各个流体动力和热力机理的数量级估计以及对液滴夹带和沉积的热通量影响的分析上。建立了一个简单的界面湍流模型来表征由于界面张力引起的湍流强度抑制。热流对液滴夹带的影响取决于蒸汽散发引起的剪切力下降与气泡排放之间的竞争:在低流量条件下,气泡排放大于剪切力下降,因此,净效应是增加液滴的夹带。在高流量条件下,情况可能会逆转。由于界面湍流阻尼和由于蒸发引起的径向蒸气散发的耦合作用,热通量对液滴沉积的影响仅对非常细的液滴(小于1μm)才有意义,而对于中型和大尺寸的液滴,则热通量效应可以忽略不计。然后,该分析用于开发液滴夹带和沉积速率的本构方程,以考虑热力学和流体动力学机制之间的相互作用,从而提供了改进的CHF预测以用于限制质量范​​围(LQR)CHF实验数据。

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