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首页> 外文期刊>International Journal of Refrigeration >Options for low-global-warming-potential and natural refrigerants Part 2: Performance of refrigerants and systemic irreversibilities
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Options for low-global-warming-potential and natural refrigerants Part 2: Performance of refrigerants and systemic irreversibilities

机译:低全球变暖潜力和天然制冷剂的选项第2部分:制冷剂的性能和系统性的不可逆转

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摘要

There is growing interest in substituting existing refrigerants with low global warming potential (GWP) refrigerants, including naturally occurring fluids, to reduce the impact of human activities on climate change. In the Part I of the study, we examined 13 refrigerants from the perspective of the characteristic shape of their respective temperature-entropy (T-S) and the logarithm of the pressure versus inverse absolute temperature (log P vs. T-1) phase boundary. In Part 2, we are evaluating prospective low-GWP refrigerants in four distinct heat pump cycles using the First and Second Laws of thermodynamics. The essence of the study is to establish the performance of the low-GWP refrigerants when deployed in a heat pump system. Exergy analysis provides a true measure of lost work, or systemic inefficiencies, vividly quantifying areas of improvement and identifying the preferred cycle for a refrigerant. The combined knowledge of the properties of the phase boundary on either side of the critical point, and exergy analysis of prospective cycles is necessary for a better perspective on discriminating among refrigerants as hydrochlorofluorocarbons are phased out and replacement refrigerants must be found. Published by Elsevier Ltd.
机译:越来越兴趣地用低全球变暖潜力(GWP)制冷剂(包括天然存在的液体)的现有制冷剂,以减少人类活动对气候变化的影响。在研究的第一部分中,我们从它们各自的温度熵(T-S)的特征形状的角度检查了13个制冷剂,以及压力与逆绝对温度(LOG P对T-1)相位边界的对数。在第2部分中,我们正在使用热力学的第一和第二律规律在四个不同的热泵循环中评估前瞻性低GWP制冷剂。该研究的本质是在进行热泵系统中建立低GWP制冷剂的性能。 Deergy分析提供了丧失工作的真正措施,或系统性低效率,生动地量化改进区域,并识别制冷剂的首选循环。临界点两侧的相位边界的性质的结合知识,以及对未来循环的出门分析是为了更好的视角,因为氢氯氟烃的歧视,必须找到氢氯氟烃的制冷剂和更换制冷剂。 elsevier有限公司出版

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