首页> 外文期刊>Journal of Non-Equilibrium Thermodynamics >Energy and Exergy Analysis of Multi-Temperature PCMs Employed in a Latent Heat Storage System and Parabolic Trough Collector
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Energy and Exergy Analysis of Multi-Temperature PCMs Employed in a Latent Heat Storage System and Parabolic Trough Collector

机译:潜热储存系统和抛物面槽收集器多温PCM的能量和漏极分析

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摘要

This study represents the exergy analysis of the evacuated tube parabolic trough collector and the cascaded latent heat storage system using multi-temperature phase change material (PCMs) during the charging process. The objective of the work is to control the losses and increase the efficiency of the system. The exergy analysis has been conducted on the basis of the first and second laws of thermodynamics in a parabolic trough collector with various mass flow rates of the heat transfer fluid (HTF). The overall variation of exergy efficiency of the collector with varying mass flow rate of the HTF is 5.9?%. The thermodynamic analysis of the cascaded latent heat storage system has been done during the charging process in which the PCM absorbs energy from the HTF and undergoes a phase transformation from the solid to the liquid state. The exergy analysis is conducted by varying the mass flow rate of the HTF in the storage system for both insulated and non-insulated systems. It is noticed that the variation of exergy stored for 5 and 10 liters per minute is 24.609?kW and 40.48?kW, respectively. It is concluded that the high range of energy and exergy stored in the system is achieved by the high flow rate of the HTF.
机译:该研究代表了在充电过程中使用多温度相变材料(PCM)的抽空管抛物线槽收集器和级联潜热存储系统的驱动分析。工作的目的是控制损失并提高系统的效率。已经基于抛物面槽收集器中的第一和第二律法定律进行了Deergy分析,其具有传热液(HTF)的各种质量流量。收集器具有不同质量流速的收集器的漏洞效率的总体变化为5.9?%。在充电过程中已经完成了级联潜热存储系统的热力学分析,其中PCM从HTF吸收能量并经历从固体到液态的相变。通过改变绝缘和非绝缘系统的存储系统中HTF的质量流量来进行Deerve分析。注意到,储存5和10升每分钟的排泄物的变化分别为24.609?KW和40.48 kW。结论是,通过HTF的高流速实现了系统中存储在系统中的高能量和漏洞。

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