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Theoretical research of critical heat flux in subcooled impingement boiling on the stagnation zone

机译:滞流区过冷冲击沸腾临界热通量的理论研究

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A new mechanism model for determination of the critical heat flux (CHF) in subcooled impingement boiling on the stagnation zone is proposed in this paper. It is based on the combination of the Helmholtz instability theory of macrolayer and the model of bubble induced turbulent heat transfer in subcooled impingement boiling. A semi-theoretical and semi-empirical correlation and its nondimensional form of the CHF for subcooled jet impingement boiling on the stagnation zone are also derived. Under the circumstances of CHF, the bubble induced turbulent heat transfer coefficient gets doubled as compared to the single-phase laminar heat transfer coefficient according to the theoretical model and the experimental data. And this kind of bubble induced turbulent heat transfer enhancing effect can be considered as a fixed ratio. The theoretical analysis result for the present case is successfully verified by the experimental result obtained on the smooth heating surface. Through the discussions, it is obtained that the CHF ratio of the subcooled jet impingement boiling against the saturated jet impingement boiling is theoretically related to the surface condition of the heater and the properties and impact velocity of the working fluid.
机译:提出了确定停滞区过冷冲击沸腾临界热通量的新机理模型。它基于宏观层的亥姆霍兹不稳定性理论和过冷冲击沸腾中气泡引起的湍流传热模型的结合。还推导了滞流区过冷射流冲击沸腾的CHF的半理论和半经验相关性及其无量纲形式。根据理论模型和实验数据,在CHF条件下,气泡引起的湍流传热系数是单相层流传热系数的两倍。并且这种气泡引起的湍流传热增强效果可以认为是固定比率。通过在光滑的加热表面上获得的实验结果成功验证了当前情况的理论分析结果。通过讨论,可以得出,过冷射流沸腾相对于饱和射流沸腾的CHF理论上与加热器的表面状况以及工作流体的性质和冲击速度有关。

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