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Parametric Quantification of Low GWP Refrigerant for Thermosyphon Driven Solar Water Heating System

机译:热虹吸驱动太阳能热水系统中低全球升温潜能值制冷剂的参数量化

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摘要

Modern lifestyle, industrialization and economy thrive on energy which is getting expensive overtime. Thermosyphon based systems are getting attraction for their promising heat transfer efficiency and zero energy utilization. Refrigerants having ozone depletion potential (ODP) and high Global Warming Potential (GWP) have been banned or under time bared permission under Montreal (1987) and Kyoto (1997) protocols. We have devolved a Refrigerant Parametric Quantification (RPQ) method for the choice of optimal refrigerant for density driven solar water heaters. A set of 29 . refrigerants are simulated Using REFPROP under various temperature and pressure conditions. The optimal parameters of thermosyphon system are identified from governing equations, international environment safety protocols and open literature. The proposed RPQ method shows most appropriate refrigerant for given temperature range. In second part, the proposed system is simulated in TRNSYS using forced circulation method. In the end, a glass evacuated tube collector is developed and tested on the principal of thermosyphon, employing the best refrigerant emerged from simulation study.
机译:现代生活方式,工业化和经济发展源于能源,而随着时间的推移,能源变得越来越昂贵。基于热虹吸的系统因其有希望的传热效率和零能耗而受到人们的关注。根据蒙特利尔(1987年)和京都(1997年)协议,具有臭氧消耗潜能值(ODP)和高全球变暖潜能值(GWP)的制冷剂已被禁止或在时间限制下获得许可。我们已经开发出一种制冷剂参数量化(RPQ)方法,以为密度驱动的太阳能热水器选择最佳制冷剂。一套29张。使用REFPROP在各种温度和压力条件下模拟制冷剂。从控制方程,国际环境安全协议和公开文献中确定了热虹吸系统的最佳参数。建议的RPQ方法显示了在给定温度范围内最合适的制冷剂。在第二部分中,使用强制循环方法在TRNSYS中对提出的系统进行了仿真。最后,开发了一种玻璃真空管集热器,并根据热虹吸原理进行了测试,并采用了模拟研究中得出的最佳制冷剂。

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