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Characterization and energy performance of a slurry PCM-based solar thermal collector: a numerical analysis

机译:基于浆料PCM的太阳能热收集器的表征和能量性能:数值分析

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Flat plate solar thermal collector is the most common technology for solar energy conversion at the building scale. This technology has been established since long time and continuous developments have been achieved as time passed by; significant improvements of flat plate solar thermal collectors are thus now limited. A novel approach to increase further the performance of this technology is based on the exploitation of the latent heat of the heat carrier fluid. In order to assess this strategy, a previously developed numerical model of flat plate solar thermal collector with slurry PCM as heat carrier is herewith used to simulate the technology. The characterization and energy performance of such a system are herewith presented, based on the outcome of the numerical analysis. The results demonstrate that the novel approach is able to improve the performance of the system under different boundary conditions and in different climates: the improvement in the instantaneous efficiency is in the range 5-10%, while during the winter season the converted heat by the slurry PCM-based system is 20-40% higher than that of a conventional water based solar collector, depending on the climates - the colder the climate, the larger the improvement.
机译:平板太阳能热收集器是建筑规模的太阳能转换最常见的技术。这项技术已经成立,因为随着时间的推移,已经实现了长期和持续发展;因此,平板太阳能热收集器的显着改进现在是有限的。一种新的提高该技术性能的方法是基于热载体流体的潜热的开发。为了评估该策略,以前开发了具有浆料PCM作为热载体的平板太阳能热收集器的数值模型,用于模拟技术。根据数值分析的结果,本系统的表征和能量性能在此提出。结果表明,新的方法能够在不同的边界条件下提高系统的性能,不同的气候:瞬时效率的改善在5-10%的范围内,而在冬季冬季的转化热量基于浆料的PCM系统比传统水基太阳能收集器高20-40%,取决于气候 - 较冷的气候,改善越大。

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