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Design and analysis of concentrating solar power plants with fixed-bed reactors for thermochemical energy storage

机译:具有固定床反应器的集中式太阳能发电厂的设计和分析,用于热化学能存储

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摘要

Concentrating solar power (CSP) integrated with thermochemical energy storage (TCES) has the potential to deliver cost-effective and dispatchable renewable power. In this work, a system-level analysis of CSP with fixed-bed reactors for TCES is provided. First, we simulate fixed-bed reactors at various operating conditions and build effective surrogate models. Second, we develop an optimization model for the design and operation of CSP plants under seasonal solar variability. Using the proposed model, we compare the performance of three types (redox, hydroxide, and carbonate) of solid-gas TCES systems. Results show that, with careful design, TCES can potentially improve the plant performance over two-tank molten salt storage. Finally, the impacts of key process parameters and reaction properties are analyzed to provide guidance for future TCES development.
机译:与热化学能存储(TCES)集成的集中式太阳能(CSP)有潜力提供具有成本效益的可调度可再生能源。在这项工作中,提供了用于TCES的带有固定床反应器的CSP的系统级分析。首先,我们在各种运行条件下模拟固定床反应堆,并建立有效的替代模型。其次,我们为日照季节变化下的CSP工厂的设计和运行开发了一个优化模型。使用提出的模型,我们比较了三种类型的氧化碳(固体氧化物气体TCES系统)的性能(氧化还原,氢氧化物和碳酸盐)。结果表明,经过精心设计,与两罐熔融盐存储相比,TCES可以潜在地改善工厂性能。最后,分析了关键工艺参数和反应特性的影响,为将来的TCES开发提供了指导。

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