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Embodied energy and cost of high temperature thermal energy storage systems for use with concentrated solar power plants

机译:用于集中式太阳能发电厂的高温热能存储系统的实现能源和成本

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The intermittency of renewable energy systems remains one of the major hurdles preventing a large scale uptake of these technologies and concentrated solar power (CSP) systems are no different. However, CSP has the benefit of being able to store excess heat using thermal energy storage (TES). For the uptake of CSP with TES it must be demonstrated that the technology is both economically as well as environmentally feasible. This paper aims to investigate the economic and environmental impact of several TES options that are available for CSP systems. The investigated systems include an encapsulated phase change material (PCM) system, a coil-in-tank PCM system and a liquid sodium TES system. The economic impact in the current study refers to the capital cost (CAPEX) of each system including the tank, storage material, encapsulation cost (if applicable) and allowances for construction and engineering. The environmental impact of each system is accounted by calculating the embodied energy of each of the system components. Each storage system will be required to store a comparable amount of energy so that reliable conclusions can be drawn. The results from this analysis conclude that the encapsulated PCM (EPCM) and coil-in-tank system represent an embodied energy of roughly one third of the corresponding state-of-the-art two-tank molten salt system.
机译:可再生能源系统的间歇性仍然是阻止大规模采用这些技术的主要障碍之一,而集中式太阳能(CSP)系统也是如此。但是,CSP的优势在于能够使用热能存储(TES)来存储多余的热量。为了用TES吸收CSP,必须证明该技术在经济和环境上都是可行的。本文旨在研究可用于CSP系统的几种TES选项的经济和环境影响。被研究的系统包括一个封装的相变材料(PCM)系统,一个储罐内PCM系统和一个液态钠TES系统。当前研究中的经济影响是指每个系统的资本成本(CAPEX),包括储罐,存储材料,封装成本(如果适用)以及建筑和工程补贴。通过计算每个系统组件的内在能量来考虑每个系统的环境影响。每个存储系统都需要存储相当数量的能量,以便得出可靠的结论。该分析的结果得出结论,封装的PCM(EPCM)和罐中线圈系统代表的能量大约是相应的现有技术的两罐熔融盐系统的大约三分之一。

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