首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Improved performance of a nanorefrigerant-based vapor compression refrigeration system: A new alternative
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Improved performance of a nanorefrigerant-based vapor compression refrigeration system: A new alternative

机译:提高了基于纳米Flaiger的蒸汽压缩制冷系统的性能:一种新的替代品

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摘要

An attempt has been made to improve the heat transfer characteristics of the vapor compression refrigeration cycle using nanorefrigerant (R134a and Al_(2)O_(3), size 20 nm). The performance parameters such as, coefficient of performance, cooling capacity, energy consumption, and temperature drop across condenser and evaporator have been investigated and analyzed. This has been done by varying the mass fraction of nanoparticles of Al_(2)O_(3)(0.5–1 wt%) and the flow rate of nanorefrigerant. The investigation has been carried out using three types of nanorefrigerants, i.e. pure R134a, R134a+Al_(2)O_(3)(0.5 wt%), and R134a+Al_(2)O_(3)(1 wt%) at flow rates of 6.5 L/h and 11 L/h, respectively. The coefficient of performance of the refrigeration system using 0.5% of Al_(2)O_(3)(wt%) is found to be improving with volume flow rates of nanorefrigerant, i.e. 7.20% for 6.5 L/h and 16.34% for 11 L/h. The use of nanorefrigerant (R134a+Al_(2)O_(3)) has also resulted in a significant increase in the cooling capacity of the refrigeration system. A substantial drop in the temperature across the condenser (3.0–23.77%), and gain in temperature across the evaporator (4.69–39.30%) is also observed for the refrigeration system under investigation.
机译:已经尝试改善纳米Frufigher(R134a和Al_(2)O_(3),大小20nm)的蒸汽压缩制冷循环的传热特性。研究和分析了诸如性能系数,性能系数,冷却能力,能量消耗和温度下降的性能参数。这是通过改变Al_(2)O_(3)(0.5-1wt%)的纳米颗粒的质量分数和纳米Fr剂的流速来完成的。研究已经使用三种类型的纳米框架进行,即纯R134a,R134a + Al_(2)O_(3)(0.5wt%),R134a + Al_(2)O_(3)(1wt%)在流动下6.5 L / h和11 L / h的速率分别为6.5升/小时。发现使用0.5%的Al_(2)O_(3)(WT%)的制冷系统的性能系数以纳米Frfigerant的体积流速改善,即7.5L / h的7.20%,11升16.34% /H。使用纳米FREFFIGHER(R134A + AL_(2)O_(3))也导致制冷系统的冷却能力显着增加。在调查下,还观察到,在调查中的制冷系统,还观察到蒸发器上的温度下降(3.0-23.77%),并观察到蒸发器中的温度(4.69-39.30%)。

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