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Performance of Loaded Thermal Storage Unit with a Commercial Phase Change Materials based on Energy and Exergy Analysis

机译:基于能量和火用分析的商业相变材料负载蓄热装置的性能。

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This work presents an energy/exergy analysis to investige performance of thermal storage unit which loaded with a commercial phase change material (Plus ICE H190). The influence of fluid parameters on the energy/exergy effectiveness was examined. The temporal changes of the energy and exergy rate and performace of the storage unit are obtained? in the results. Latent heat principle is considered an efficient method to gain a higher effectiveness of system from an energy and exergy aspects. The fluid mass flow rate during charging and discharging periods were 2.50 kg/min and 1.26 kg/min, respectively. The results showed a significant increase of thermal resistance on the thermal storage unit performance. Fluid and phase change material show significant temperature difference on the rate of energy/exergy quantites and the time of melting or soldification. Ther results indicated that the average rate of energy and exergy were 1.3 kW and 0.54 kW, respectively. Wheras, energy and exergy? average rate during discarging periods were 1.1 kW and 0.31 kW, respectively. Also, the global rate during the experimetal periods were about 84% and 54%, respectively. Article History : Received July 6 th 2017; Received in revised form September 15 th 2017; Accepted 25 th Sept 2017; Available online How to Cite This Article : Olimat, A.N., Awad, A.S., Al-Gathain, F.M., and Shaban, N.A.. (2017) Performance of Loaded Thermal Storage Unit With A Commercial Phase Change Materials Based on Energy and Exergy Analysis. International Journal of Renewable Energy Develeopment, 6(3),283-290. https://doi.org/10.14710/ijred.6.3.283-290
机译:这项工作提出了一种能量/能量分析,以研究装有商用相变材料(Plus ICE H190)的蓄热单元的性能。检查了流体参数对能量/火用效率的影响。获得能量和火用率随时间的变化以及存储单元的性能?在结果中。潜热原理被认为是从能量和火用方面获得更高系统有效性的有效方法。充放电期间的流体质量流量分别为2.50 kg / min和1.26 kg / min。结果表明,热阻显着增加了蓄热单元的性能。流体和相变材料在能量/火用量的速率以及熔化或脱硫的时间上显示出明显的温差。结果表明,平均能量利用率和火用能量分别为1.3 kW和0.54 kW。威士忌,能量和火用力?放电期间的平均功率分别为1.1 kW和0.31 kW。同样,实验金属时期的全球比例分别约为84%和54%。文章历史:于2017年7月6日收到;于2017年9月15日收到修订版; 2017年9月25日接受;在线提供如何引用本文:美国奥利马特(Olimat),美国阿瓦德(Awad),美国铝和铝(Al-Gathain)和美国纽约州沙班(2017)基于能量和火用分析的商业化相变材料负载储热单元的性能国际可再生​​能源发展杂志,6(3),283-290。 https://doi.org/10.14710/ijred.6.3.283-290

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