首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental study on heat transfer characteristics of R600a/POE/CuO nano-refrigerant flow condensation
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Experimental study on heat transfer characteristics of R600a/POE/CuO nano-refrigerant flow condensation

机译:R600a / POE / CuO纳米制冷剂流动冷凝传热特性的实验研究

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摘要

An experimental study is carried out on heat transfer characteristics of a nano-refrigerant flow during condensation inside a horizontal smooth tube. Experiments are conducted for three different working fluid types including: (i) pure refrigerant (R600a); (ii) refrigerant/lubricant (R600a/oil); and (iii) nanorefrigerant: refrigerantflubricantanoparticles (R600a1 oil/CuO). Polyolester oil (POE) is utilized as the lubricant in the two latter cases. In addition, nano-refrigerants (R600a/oil/CuO) are prepared by dispersing CuO nanoparticles with different mass fractions of 0.5%, 1% and 1.5% in the baseline mixture (R600a/oil). The implemented experiments covered a wide range of variables including: (i) mass fluxes from 154.8 to 265.4 kg/m(2)/s; (ii) vapor qualities between 10% and 80%; (iii) heat flux from 17 to 20 kW/m(2); and (iv) condensation pressure from 5.1 to 6.2 bar. It is shown that significant heat transfer enhancement is achieved by adding nanoparticles to the baseline mixture and pure refrigerant. The maximum heat transfer augmentation was observed for nano-refrigerant with 1.5% mass fraction; 83% higher heat transfer rate compared to pure-refrigerant fluid flow at the same experimental conditions. (C) 2015 Elsevier Inc. All rights reserved.
机译:对水平制冷剂管内冷凝过程中纳米制冷剂流的传热特性进行了实验研究。针对三种不同的工作流体类型进行了实验,包括:(i)纯制冷剂(R600a); (ii)制冷剂/润滑剂(R600a /油); (iii)纳米制冷剂:制冷剂/纳米颗粒(R600a1油/ CuO)。在后两种情况下,将多酯油(POE)用作润滑剂。另外,通过将具有0.5%,1%和1.5%的不同质量分数的CuO纳米颗粒分散在基线混合物(R600a /油)中来制备纳米制冷剂(R600a /油/ CuO)。实施的实验涵盖了广泛的变量,包括:(i)从154.8到265.4 kg / m(2)/ s的质量通量; (ii)蒸气质量在10%至80%之间; (iii)热通量为17至20 kW / m(2); (iv)冷凝压力为5.1至6.2巴。结果表明,通过将纳米颗粒添加到基线混合物和纯制冷剂中,可以显着提高传热效率。对于质量分数为1.5%的纳米制冷剂,观察到最大的传热增加。在相同的实验条件下,与纯制冷剂流体相比,传热率高83%。 (C)2015 Elsevier Inc.保留所有权利。

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