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首页> 外文期刊>Science and Technology for the Built Environment >Two-phase pressure drop and condensation heat transfer of R32/R1234ze(E) non-azeotropic mixtures inside a single microchannel
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Two-phase pressure drop and condensation heat transfer of R32/R1234ze(E) non-azeotropic mixtures inside a single microchannel

机译:单个微通道内R32 / R1234ze(E)非共沸混合物的两相压降和冷凝传热

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摘要

Much attention has been paid in the recent years to the possible use of fluorinated propene isomers for the substitution of high global warming potential refrigerants. Among the fluorinated propene isomers, R1234ze(E) may be a substitute of R134a for refrigeration applications. R1234ze(E) has a global warming potential lower than 1 (considering a period time of 100years), and it is receiving some attention also as a component of low global warming potential mixtures. In this article, a mixture of R1234ze(E) and R32 has been investigated at two different mass compositions (23/77% and 46/54% by mass) with regard to the performance at the condenser. The local heat transfer coefficients during condensation in a single microchannel with 0.96mm diameter are measured and analyzed. The frictional two-phase pressure drop in the same channel is also investigated. The present tests are carried out on the experimental apparatus available at the Two-Phase Heat Transfer Lab of the University of Padova. The new experimental data are compared to those of pure R1234ze(E) and R32. This allows the heat transfer penalization due to the mass transfer resistance occurring during condensation of these zeotropic mixtures to be analyzed and suitable predicting models to be assessed. The knowledge of heat transfer coefficient and pressure drop allows evaluation of the overall performance of these mixtures when used in condensers.
机译:近年来,人们已经将氟化丙烯异构体用于取代具有高全球变暖潜能的制冷剂的可能性引起了广泛关注。在氟化丙烯异构体中,R1234ze(E)可以替代R134a用于制冷应用。 R1234ze(E)的全球变暖潜能值小于1(考虑到100年的时间),并且它作为低全球变暖潜能混合物的组成部分也受到了关注。在本文中,研究了R1234ze(E)和R32的混合物在两种不同的质量组成(质量百分比为23/77%和46/54%)下的冷凝器性能。测量并分析了直径为0.96mm的单个微通道中冷凝过程中的局部传热系数。还研究了同一通道中的摩擦两相压降。本测试是在帕多瓦大学两相传热实验室的实验设备上进行的。将新的实验数据与纯R1234ze(E)和R32的数据进行比较。这允许对由于在这些共沸混合物的冷凝期间发生的传质阻力而导致的传热损失进行分析,并评估合适的预测模型。当在冷凝器中使用时,对传热系数和压降的了解可以评估这些混合物的整体性能。

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