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

机译:用于CSP应用的多层固体PCM热控罐作为热能存储系统的数值评价

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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:双罐系统是用于电流集中太阳能(CSP)植物的热能存储(TES)的技术。热量储存概念被认为是十多年作为可能的解决方案,以降低这些植物中的存储系统的高成本。在以前的作品中,多层叠型固体PCM(MLSPCM)跃层式储罐配置已经出台和研究,并为他们的作为CSP热储能系统使用可喜的成果。在这项工作中,通过考虑变量入口条件,在使用这种新的TES的新概念和模拟坦克壳和基础时进行进一步分析。数值模拟基于模块化面向对象的方法。呈现精力和淬火结果,并与参考2箱箱和具有固体或相变填料的不同热量填料进行比较。同样,有前途的结果是针对测试的MLSPCM概念获得的。

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