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Multi-layered solid-PCM thermocline thermal storage for CSP. Numerical evaluation of its application in a 50 MWe plant

机译:用于Csp的多层固体pCm温跃层热储存。 50 mWe装置在数值评估中的应用

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摘要

Thermocline storage concept is considered as a possible solution to reduce the cost of thermal storage in concentrated solar power (CSP) plants. Recently, a multi-layered solid-PCM (MLSPCM) concept—consisting of a thermocline-like tank combining layers of solid and phase change filler materials—has been proposed. This approach was observed to result in lower thermocline degradation throughout charge/discharge cycles, due to the thermal buffering effect of the PCM layers located at both ends of the tank. MLSPCM prototypes designed for a pilot scale plant were numerically tested and compared against other designs of single-tank thermocline systems, such as: solid-filled thermocline, tanks filled with a single encapsulated PCM and cascaded-PCM configurations. Results showed promising results of the MLSPCM configurations for their potential use in CSP plants.\ud\udIn this work, the MLSPCM concept is used for designing a thermal energy storage (TES) system for a CSP plant with the dimensions and operating conditions of a parabolic trough plant of 50 MWe, similar to Andasol 1 (Granada, Spain). The performance evaluation of each of the proposed prototypes is virtually tested by means of a numerical methodology which considers the heat transfer and fluid dynamics phenomena present in these devices. Two sets of cases are considered, one with the objective of testing the TES systems individually, by defining specific operating conditions and taking the systems to a periodic steady state; and another, aiming to evaluate their performance after several days of operation in a CSP plant, in which the weather variability and the thermal behavior of the tank walls and foundation are simulated. Thermal performance parameters, such as total energy and exergy stored/released and the efficiency in the use of the storage capacity, are calculated and compared with those obtained by other thermocline-like configurations (single-solid and single-PCM), and with a reference 2-tank molten-salt system. Obtained results allow to continue considering the MLSPCM concept as an interesting alternative for thermal storage in CSP facilities.
机译:高温热电存储概念被认为是降低集中式太阳能(CSP)电厂中的热存储成本的可能解决方案。近来,已经提出了多层固体-PCM(MLSPCM)概念—由结合了固体和相变填料材料的层的类热线槽组成。观察到,由于位于储罐两端的PCM层的热缓冲作用,这种方法在整个充/放电循环中可导致较低的热跃层降解。为中试规模的工厂设计的MLSPCM原型经过了数值测试,并与其他单罐式温床系统设计进行了比较,例如:固体填充式温床,装有单个封装PCM和级联PCM配置的储罐。结果显示了MLSPCM配置在CSP工厂中的潜在应用的可喜结果。\ ud \ ud在这项工作中,MLSPCM概念用于设计CSP工厂的热能存储(TES)系统,其尺寸和运行条件为: 50 MWe的抛物线槽植物,类似于Andasol 1(西班牙格拉纳达)。每个拟议原型的性能评估均通过数值方法进行了虚拟测试,该方法考虑了这些设备中存在的传热和流体动力学现象。考虑了两种情况,一种是通过定义特定的运行条件并使系统进入周期性稳定状态来分别测试TES系统。另一个目的是评估在CSP工厂中运行几天后的性能,其中模拟了天气变化性以及罐壁和地基的热行为。计算热性能参数,例如存储/释放的总能量和火用量以及使用存储容量的效率,并将其与通过其他类似热跃线的配置(单固体和单相PCM)获得的热性能参数进行比较。参考2槽熔融盐系统。获得的结果允许继续考虑将MLSPCM概念作为CSP设施中热量存储的有趣替代方案。

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