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Thermodynamic Study on Blends of Hydrocarbons and Carbon Dioxide as Zeotropic Refrigerants

机译:热力学研究碳氢化合物和二氧化碳作为胞胎制冷剂的混合物

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Finding alternative refrigerants is of extreme importance to mitigate anthropogenic climate change. Among the next-generation refrigerants, hydrocarbons (HCs) are of technical interest because they are natural, efficient, have low global warming potential (GWP), and zero ozone depletion potential (ODP). However, their flammability impedes their widespread usage for fire-safety reasons. The present work investigated zeotropic mixtures of hydrocarbons with carbon dioxide (CO_2) as refrigerants for a simple vapor-compression refrigeration cycle, since their flammability risks are lower than those of pure hydrocarbons. Refrigerants were selected utilizing various screening steps based on environmental effects (such as GWP, ODP, and toxicity), thermophysical properties (such as critical temperature, and boiling point), and mixture data availability. The thermodynamic analysis for these selected zeotropic mixtures was performed for a cycle with a constant temperature of energy (heat) transfer fluid in both the evaporator and the condenser/gas cooler. Subsequently, performance parameters like the coefficient of performance and volumetric refrigeration capacity were compared for each of these blends at different operating conditions, and thus, the most promising hydrocarbon mixtures with CO_2 were identified. As a result, the following four hydrocarbons, individually blended with CO_2, were favorable in performance: propylene, dimethyl ether, propane, and isobutane. Further analysis was performed to determine the non-dimensional exergy destruction by the various components of the cycle.
机译:寻找替代制冷剂对于减轻人为气候变化的极端重要性。在下一代制冷剂中,碳氢化合物(HCS)具有技术利益,因为它们是天然的,有效的,具有低全球变暖潜力(GWP)和零臭氧耗尽潜力(ODP)。然而,他们的易燃能力阻碍了引发火灾安全原因的广泛使用。本作者研究了用二氧化碳(CO_2)作为简单蒸汽压缩制冷循环的制冷剂的碳氢化合物的横血糖混合物,因为它们的可燃性风险低于纯烃的可燃性风险。利用基于环境影响的各种筛选步骤(例如GWP,ODP和毒性),热物理性质(如临界温度,沸点)和混合数据可用性来选择制冷剂。在蒸发器和冷凝器/气体冷却器中,对具有恒定的能量(热)转移流体的循环进行这些选定的鸟类混合物的热力学分析。随后,对不同操作条件的每种共混物进行比较性能和体积制冷容量等性能参数,因此鉴定了具有CO_2的最有前途的烃混合物。结果,以下与CO_2单独混合的以下四种烃是有利的:丙烯,二甲醚,丙烷和异丁烷。进行进一步分析以确定通过循环的各种组成部分来确定非维度出现破坏。

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