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Study on CHF characteristics in narrow rectangular channel under complex motion condition

机译:复杂运动条件下窄矩形通道CHF特性研究

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In present work, the critical heat flux (CHF) characteristics in narrow rectangular channel were theoretically investigated under complex motion condition. A three-field analysis program was developed combining with a unified form of additional forces caused by motions, and the program was validated by CHF experiment data with a better prediction accuracy. The CHF characteristics of rectangular channel were evaluated based on two types of situations: (1) oscillating inlet flow and (2) constant inlet flow with different motions including heaving, rolling and the coupled motion of heaving and rolling. The results show that the oscillation of the inlet flow has a great influence on the CHF, the increases in the amplitude and period of the inlet flow oscillation cause the dryout to occur in advance. When the inlet flow is fixed, various motion conditions have little effect on CHF for high mass flux, and the reduction of CHF does not exceed 5%. However, the CHF is obviously reduced for the low mass flux due to the significant oscillation or thinning effect of the outlet liquid film caused by motions.
机译:在目前的工作中,理论上在复杂的运动条件下进行了窄矩形通道中的临界热通量(CHF)特性。三场分析程序与由运动引起的统一力的额外力组合开发,通过CHF实验数据验证了该程序,具有更好的预测准确性。基于两种类型的情况评估矩形通道的CHF特性:(1)振荡入口流动和(2)具有不同运动的恒定入口流,包括隆起,轧制和滚动的耦合运动。结果表明,入口流的振荡对CHF有很大影响,入口流动振荡的幅度和周期的增加导致干沟预先发生。当入口流是固定的时,各种运动条件对高质量通量的CHF几乎没有影响,并且CHF的还原不超过5%。然而,由于由运动引起的出口液体膜的显着振荡或稀释效应,CHF显然降低了低质量磁通量。

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