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首页> 外文期刊>International Journal of Refrigeration >Horizontal convective boiling of R1234yf, R134a, and R450A within a micro-fin tube
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Horizontal convective boiling of R1234yf, R134a, and R450A within a micro-fin tube

机译:R1234YF,R134A和R450A的水平对流沸点在微鳍管内

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This paper presents local convective boiling heat transfer and Fanning friction factor measurements in a micro-fin tube for R134a and two possible low global warming potential (GWP) refrigerant replacements for R134a, namely R1234yf and R450A. Test section heating was achieved with water in either counterflow or in parallel flow with the test refrigerant to provide for a range of heat fluxes for each thermodynamic quality. An existing correlation from the literature for single and multi-component mixtures was shown to not satisfactorily predict the convective boiling measurements for flow qualities greater than 40%. Accordingly, a new correlation was developed specifically for the test fluids of this study so that a fair comparison of the heat transfer performance of the low GWP refrigerants to that of R134a could be made. The new correlation was used to compare the heat transfer coefficient of the three test fluids at the same heat flux, saturated refrigerant temperature, and refrigerant mass flux. The resulting example comparison, for the same operating conditions, showed that the heat transfer coefficient of the multi-component R450A and the single-component R1234yf were, on average, 15% less and 5% less, respectively, than that of the single-component R134a. Friction factor measurements were also compared to predictions from an existing correlation. A new correlation for the friction factor was developed to provide a more accurate prediction. The measurements and the new models are important for the evaluation of potential low-GWP refrigerants replacements for R134a. Published by Elsevier Ltd.
机译:本文介绍了局部对流沸腾传热和扇形摩擦因子测量,用于R134A的微翅片管和用于R134A的两种可能的低全球变暖潜力(GWP)制冷剂替代品,即R1234YF和R450A。在逆流或与试验制冷剂的平行流动中使用水进行试验段加热,以提供各种热力学质量的一系列热通量。显示了单组分和多组分混合物的文献的存在相关性,不令人满意地预测流量质量大于40%的对流沸腾测量。因此,专门为该研究的测试流体开发了一种新的相关性,因此可以进行低GWP制冷剂对R134A的传热性能的公平比较。新相关性用于比较在相同的热通量,饱和的制冷剂温度和制冷剂质量磁通中的三个测试流体的传热系数。对于相同的操作条件,所得到的示例比较表明,多组分R450A和单组分R1234YF的传热系数平均分别比单一 - 组件R134A。与现有相关性的预测相比,还与来自现有相关的预测的摩擦因子测量。开发了摩擦系数的新相关性以提供更准确的预测。测量和新型号对于评估潜在的低GWP制冷剂对R134A的更换来说很重要。 elsevier有限公司出版

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