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Energy and Exergy analysis of solar water heating system integrated with phase change material (PCM)

机译:相变材料(PCM)集成的太阳能热水系统的能量和火用分析

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Recent projections anticipate that the essential energy consumption will increase by 48% in 2040. This has prompted to a need to create proficient and sustainable techniques of storing energy. Solar thermal energy can be stored in the form of latent heat by utilizing appropriate phase change materials (PCMs), which offer high heat storage capacity. An experimental study was done in Khartoum city during summer season to investigate the thermal performance of solar water heating system integrated with PCM using flat plate collector as a heat source. The PCM used was paraffin wax whose melting point is 56 °C. An energy and exergy analysis was done to assess the thermal performance of the system and fix the thermodynamic blemish in the energy system. The outcomes showed that PCM acted as smart material which can regulate the temperature of system in the required range. The outcomes indicated that the overall energy and exergy efficiencies of the system were 85% and 76% respectively. The number of entropy generated was 0.26. The results showed that PCM acted as smart regulator to keep supplying the amount of heat to the system even after the absent of heat source. PCM also could increase the exergy output and led to reduce the exergy destruction. This indicates that the PCM could improve the exergy efficiency. The overall outcomes showed that the PCM optimized the performance of solar water heater system by improve energy and exergy efficiencies.
机译:最近的预测预计,到2040年,基本能源消耗量将增长48%。这促使人们需要创建一种熟练且可持续的储能技术。通过利用适当的相变材料(PCM),可以以潜热的形式存储太阳能,这些相变材料具有很高的蓄热能力。夏季在喀土穆市进行了一项实验研究,以平板收集器为热源,研究与PCM集成的太阳能热水系统的热性能。使用的PCM是熔点为56°C的石蜡。进行了能量和火用分析,以评估系统的热性能并修复能量系统中的热力学缺陷。结果表明,PCM是一种智能材料,可以在所需范围内调节系统温度。结果表明,该系统的总能效和火用效率分别为85%和76%。产生的熵为0.26。结果表明,即使在没有热源的情况下,PCM仍可充当智能调节器,继续为系统提供热量。 PCM也可以增加火用输出,并减少火用破坏。这表明PCM可以提高火用效率。总体结果表明,PCM通过提高能源和火用效率来优化太阳能热水器系统的性能。

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