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首页> 外文期刊>Sustainable Energy Technologies and Assessments >Effect of the concentration ratio on energetic and exergetic performance of concentrating solar collectors with integrated transparent insulation materials
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Effect of the concentration ratio on energetic and exergetic performance of concentrating solar collectors with integrated transparent insulation materials

机译:浓度比对集成透明绝缘材料聚光太阳能集热器的能量和能量性能的影响

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摘要

The effect of the concentration ratio on the performance of parabolic trough and central receiver collectors with integrated transparent insulation materials (TIMs) is analyzed in this work. A model based on optical, energy, and exergy analyses is developed to determine thermal and second law efficiencies of concentrated solar collectors as a function of the absorber temperature and concentration ratio. The results are compared with the respective traditional collector configurations without TIM. In general, high concentration ratios are fundamental to maintain high efficiencies. The incorporation of a TIM into concentrated solar collectors leads to higher thermal efficiencies at high operating temperatures even at low concentration ratios. An equivalent second law efficiency to that of the reference collector configuration can be achieved at lower concentration ratios by incorporating a TIM in parabolic trough or a TIM and a glass envelope in central receiver collectors. The idea of using a TIM deserves further exploration as it seems to be a promising alternative that contributes to a more efficient and cost-effective technology.
机译:在这项工作中,分析了浓度比对抛物线槽和集成透明绝缘材料(TIM)的中央接收器收集器性能的影响。建立了基于光学,能量和火用分析的模型,以确定集中式太阳能集热器的热效率和第二定律效率与吸收器温度和浓度比的关系。将结果与没有TIM的传统传统收集器配置进行比较。通常,高浓度比对于保持高效率至关重要。将TIM集成到集中式太阳能集热器中,即使在低浓度比的情况下,也可以在较高的工作温度下实现更高的热效率。通过在抛物线槽中加入TIM或在中央接收器收集器中加入TIM和玻璃外壳,可以在较低的浓度比下实现与参考收集器配置相同的第二定律效率。使用TIM的想法值得进一步探索,因为它似乎是有前途的替代方案,有助于实现更高效和更具成本效益的技术。

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