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Experimental study on the heat transfer and flow characteristics of nanorefrigerants inside a corrugated tube

机译:波纹管内纳米制冷剂传热与流动特性的实验研究

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The heat transfer and flow characteristics of MWCNT-R141b nanorefrigerant with different mass fractions have been studied through experiments. Experimental results were compared with existing correlations. A two-step method was used to prepare the nanorefrigerants. Span-80 was used as surfactant with an average particle diameter of 20 nm. Transmittance method was used to evaluate the stability of nanorefrigerants. Results showed that the stability of MWCNT-R141b nanorefrigerant, which is the added dispersant, was good during the experiments. The 0.3 wt% MWCNT-R141b nanorefrigerants had optimal heat transfer enhancement effects compared with pure refrigerants. The maximum Nusselt number increased by 40%. The specific pressure drop of nanorefrigerant increased as the Reynolds number (Re) increased, and the specific pressure drop of the pure refrigerant was minimum, which is similar to R141b. (C) 2015 Elsevier Ltd and IIR. All rights reserved.
机译:通过实验研究了不同质量分数的MWCNT-R141b纳米制冷剂的传热和流动特性。将实验结果与现有的相关性进行了比较。采用两步法制备了纳米制冷剂。 Span-80用作表面活性剂,平均粒径为20 nm。采用透射法评估了纳米制冷剂的稳定性。结果表明,作为分散剂的MWCNT-R141b纳米制冷剂在实验过程中具有良好的稳定性。与纯制冷剂相比,0.3 wt%MWCNT-R141b纳米制冷剂具有最佳的传热增强效果。 Nusselt的最大数量增加了40%。纳米制冷剂的比压降随雷诺数(Re)的增加而增加,纯制冷剂的比压降最小,与R141b相似。 (C)2015 Elsevier Ltd和IIR。版权所有。

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