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首页> 外文期刊>International Journal of Multiphase Flow >Subcooled flow boiling of R-134a in vertical channels of small diameter
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Subcooled flow boiling of R-134a in vertical channels of small diameter

机译:r-134a在小直径通道中的r-134a过冷流沸腾

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摘要

Subcooled flow boiling heat transfer for refrigerant R-134a in vertical cylindrical tubes with 0.83, 1.22 and 1.70 mm internal diameter was experimentally investigated. The effects of the heat flux, q″ = 1–26 kW/m2, mass flux, G = 300–700 kg/m2 s, inlet subcooling, ΔTsub,i = 5–15 °C, system pressure, P = 7.70–10.17 bar, and channel diameter, D, on the subcooled boiling heat transfer were explored in detail. The results are presented in the form of boiling curves and heat transfer coefficients. The boiling curves evidenced the existence of hysteresis when increasing the heat flux until the onset of nucleate boiling, ONB. The wall superheat at ONB was found to be essentially higher than that predicted with correlations for larger tubes. An increase of the mass flux leads, for early subcooled boiling, to an increase in the heat transfer coefficient. However, for fully developed subcooled boiling, increases of the mass flux only result in a slight improvement of the heat transfer. Higher inlet subcooling, higher system pressure and smaller channel diameter lead to better boiling heat transfer. Experimental heat transfer coefficients are compared to predictions from classical correlations available in the literature. None of them predicts the experimental data for all tested conditions.
机译:实验研究了垂直圆柱形管中制冷剂R-134a的制冷剂R-134a的过冷流量沸腾热传递。热通量,q“= 1-26 kW / m 2,质量磁通,g = 300-700kg / m 2 s,入口过冷,Δtsub,i = 5-15°C,系统压力,p = 7.70- 10.17条和沟道直径D,详细探讨了过冷沸腾热传递。结果以沸腾曲线和传热系数的形式提出。沸腾曲线在增加热通量时,滞后曲线已经证明了滞后的存在,直到核心沸腾的核心沸腾。发现ONB的壁过热基本上高于对较大管相关的相关性的高。对于早期过冷沸腾的肿块引线增加了质量焊剂引线,以增加传热系数。然而,对于完全开发的沸腾沸腾,肿块的增加仅导致热传递的略微改善。更高的入口过冷,更高的系统压力和较小的通道直径导致更好的沸腾热传递。将实验传热系数与文献中可用的经典相关性的预测进行比较。其中没有一个预测所有测试条件的实验数据。

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