Flow Patterns in Two Nanorefrigerants R600a/CuO and R410A/CuO During the Boiling Process

IF 0.6 Q3 ENGINEERING, MULTIDISCIPLINARY
Fernando Toapanta-Ramos, Elizabeth Suquillo, Carlos Cornejo
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引用次数: 0

Abstract

The present study aims to know the flow patterns in two nanorefrigerants R600a / CuO and R410A / CuO throughout the forced boiling process in horizontal square pipes. Those are obtained using the thermophysical properties of the refrigerants R600a and R410A in state liquid and vapor, as well as the properties of the CuO nanoparticles. The analysis was carried out using two methods: analytical and numerical. The analytical method was established by formulas and correlations through scientific articles and books to find an improvement in the two-phase heat transfer, under the conditions at an inlet temperature of 8 ° C and with a quality range of 0 to 1. This allowed to verify that by adding nanoparticles to the refrigerant, the transition between the flow regimes increases progressively, while the quality of the vapor decreases. For the numerical method, the different transition limits are specified in a simulation process in the Ansys Fluent CFD Software, under established design conditions, which consequently increases the general efficiency of any refrigeration system.
两种纳米制冷剂 R600a/CuO 和 R410A/CuO 在沸腾过程中的流动模式
本研究旨在了解两种纳米制冷剂 R600a / CuO 和 R410A / CuO 在水平方形管道中整个强制沸腾过程中的流动模式。这些数据是利用制冷剂 R600a 和 R410A 在液态和气态时的热物理性质以及纳米 CuO 粒子的性质获得的。分析采用了两种方法:分析法和数值法。分析方法是通过科学文章和书籍中的公式和相关性建立起来的,目的是在入口温度为 8 ° C 和质量范围为 0 至 1 的条件下,找到两相传热的改进方法。就数值方法而言,在既定的设计条件下,在 Ansys Fluent CFD 软件的模拟过程中指定了不同的过渡极限,从而提高了制冷系统的总体效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Enfoque UTE
Enfoque UTE ENGINEERING, MULTIDISCIPLINARY-
自引率
40.00%
发文量
32
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