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Numerical evaluation of multi-layered solid-PCM thermocline-like tanks as thermal energy storage systems for CSP applications

机译:多层固体 - pCm类温跃层储罐作为Csp应用的热能储存系统的数值评估

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摘要

The two-tank system is the technology used for thermal energy storage (TES) in current concentrating solar power (CSP) plants. Thermocline storage concept has been considered for more than a decade as a possible solution to reduce the high cost of the storage system in these plants. In previous works, multi-layered solid-PCM (MLSPCM) thermocline-like storage tank configurations has been introduced and studied, giving promising results for their use as thermal energy storage systems for CSP. In this work, further analysis is performed in the use of this new concept of TES, by considering variable inlet conditions, and simulating the tank shell and the foundation. The numerical simulations are based on a modular object-oriented methodology. Energetic and exergetic results are presented and compared against a reference 2-tank case and against different thermocline configurations with either solid or phase change filler materials. Again, promising results are obtained for the tested MLSPCM concept.
机译:两罐系统是用于当前聚光太阳能发电(CSP)厂中的热能存储(TES)的技术。降低温度的存储方案已被考虑了十多年,这是降低这些工厂中存储系统高成本的一种可能的解决方案。在以前的工作中,已经介绍和研究了多层固态PCM(MLSPCM)类似于热线的储罐配置,为它们用作CSP的热能存储系统提供了令人鼓舞的结果。在这项工作中,通过考虑可变的进气条件并模拟罐壳和基础,使用这种新的TES概念进行了进一步的分析。数值模拟基于模块化的面向对象方法。给出了高能和高能的结果,并将其与参考2罐的情况以及采用固体或相变填充材料的不同温度跃迁配置进行了比较。同样,通过测试的MLSPCM概念获得了可喜的结果。

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