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The characteristics and visualization of critical heat flux of R-134a flowing in a vertical annular geometry with spacer grids

机译:R-134a在具有间隔网格的垂直环形几何形状中流动的临界热通量的特性和可视化

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摘要

In the present paper, critical heat flux (CHF) experiments of forced convection boiling were performed to investigate the CHF characteristics of a vertical annular channel with one heated rod and four spacer grids for new refrigerant R-134a. The experiments were conducted under outlet pressure of 11.6, 13, 16 and 20 bar, mass fluxes of 100-600 kg/m~2s, and inlet temperatures of 25-40 ℃. The parametric trend of the CHF data was well consistent with previous understanding in water. The comparison between the present results with effect of the flow obstacle enhancing CHF and water data in similar geometry shows R-134a can be a modeling fluid for simulating water CHF in high pressure and high temperature condition even for annular geometry. The direct observation of flowing bubble behaviors contributes to enhancing our understanding on the effect of flow obstacles for flow boiling heat transfer.
机译:在本文中,通过强制对流沸腾的临界热通量(CHF)实验来研究新型制冷剂R-134a的带有一个加热棒和四个隔板的垂直环形通道的CHF特性。实验在出口压力为11.6、13、16和20 bar,质量通量为100-600 kg / m〜2s,入口温度为25-40℃的条件下进行。 CHF数据的参数趋势与先前对水的理解非常一致。在具有相似的几何形状的流动障碍增强CHF和水数据的影响下,本研究结果之间的比较表明,R-134a可以是一种建模流体,即使对于环形几何形状,也可以在高压和高温条件下模拟水CHF。对流动气泡行为的直接观察有助于增进我们对流动障碍对流动沸腾传热的影响的理解。

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