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首页> 外文期刊>International Journal of Thermal Sciences >Flow boiling heat transfer of a zeotropic binary mixture of new refrigerants inside a single microchannel
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Flow boiling heat transfer of a zeotropic binary mixture of new refrigerants inside a single microchannel

机译:单个微通道内新制冷剂的共沸二元混合物的沸腾传热

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This study presents an experimental investigation of flow boiling of a zeotropic mixture in a micro channel. In the recent years much attention has been paid to the possible use of fluorinated propene isomers for the substitution of HFC fluids, being in most cases high-GWP refrigerants. However, the available HFOs (hydrofluoroolefins) cannot cover all the air-conditioning, heat pump and refrigeration systems when used as pure fluids because their thermodynamic properties are not suitable for all operating conditions and therefore some solutions may be found using blends of refrigerants, to satisfy the demand for a wide range of working conditions. In the present paper a mixture of R1234ze(E) and R32 (0.5/0.5 by mass) has been studied. The local heat transfer coefficient during flow boiling of this mixture in a single microchannel with 0.96 mm diameter is measured at a pressure of 14 bar, which corresponds to a bubble temperature of 26.2 degrees C. The flow boiling heat transfer coefficients measured in the present test section are discussed, with particular regard to the mass transfer mechanism in the microchannel. The new experimental data are also compared to flow boiling data of pure R1234ze(E) and pure R32 to analyze the heat transfer penalization due to the mass transfer resistance of the mixture. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:这项研究提出了在微通道中共沸混合物的流沸腾实验研究。近年来,人们已经非常关注可能使用氟化丙烯异构体替代HFC流体,在大多数情况下是高GWP制冷剂。但是,当用作纯流体时,可用的HFO(氢氟烯烃)不能涵盖所有的空调,热泵和制冷系统,因为它们的热力学特性并不适合所有操作条件,因此,使用制冷剂混合物可以找到一些解决方案,满足各种工作条件的需求。在本文中,已经研究了R1234ze(E)和R32(0.5 / 0.5质量比)的混合物。在14 bar的压力下测量该混合物在直径为0.96 mm的单个微通道中沸腾时的局部传热系数,该气泡对应于26.2摄氏度的气泡温度。在本测试中测得的沸腾传热系数讨论了本节,特别是关于微通道中的传质机理。还将新的实验数据与纯R1234ze(E)和纯R32的流动沸腾数据进行比较,以分析由于混合物的传质阻力引起的传热损失。 (C)2016 Elsevier Masson SAS。版权所有。

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