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Cost and performance analysis of concentrating solar power systems with integrated latent thermal energy storage

机译:集成潜热蓄能的聚光太阳能系统的成本和性能分析

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Integrating TES (thermal energy storage) in a CSP (concentrating solar power) plant allows for continuous operation even during times when solar irradiation is not available, thus providing a reliable output to the grid. In the present study, the cost and performance models of an EPCM-TES (encapsulated phase change material thermal energy storage) system and HP-TES (latent thermal storage system with embedded heat pipes) are integrated with a CSP power tower system model utilizing Rankine and s-CO_2 (supercritical carbon-dioxide) power conversion cycles, to investigate the dynamic TES-integrated plant performance. The influence of design parameters of the storage system on the performance of a 200 MW_e capacity power tower CSP plant is studied to establish design envelopes that satisfy the U.S. Department of Energy SunShot Initiative requirements, which include a round-trip annualized exergetic efficiency greater than 95%, storage cost less than $15/kWh_t and LCE (levelized cost of electricity) less than 6 c/kWh. From the design windows, optimum designs of the storage system based on minimum LCE, maximum exergetic efficiency, and maximum capacity factor are reported and compared with the results of two-tank molten salt storage system. Overall, the study presents the first effort to construct and analyze LTES (latent thermal energy storage) integrated CSP plant performance that can help assess the impact, cost and performance of LTES systems on power generation from molten salt power tower CSP plant.
机译:将TES(热能存储)集成到CSP(集中式太阳能)工厂中,即使在没有太阳辐射的情况下也可以连续运行,从而为电网提供可靠的输出。在本研究中,将EPCM-TES(封装相变材料热能存储)系统和HP-TES(具有嵌入式热管的潜热存储系统)的成本和性能模型与利用Rankine的CSP电力塔系统模型集成在一起和s-CO_2(超临界二氧化碳)功率转换周期,以研究动态TES集成的电厂性能。研究了存储系统的设计参数对200 MW_e容量塔式CSP电厂性能的影响,以建立满足美国能源部SunShot Initiative要求的设计范围,其中包括大于95的往返年度化能效%,存储成本低于$ 15 / kWh_t,LCE(平均电力成本)低于6 c / kWh。从设计窗口中,报告了基于最小LCE,最大能效和最大容量因子的存储系统的最佳设计,并将其与两罐式熔盐存储系统的结果进行了比较。总体而言,该研究提出了构建和分析LTES(潜热能存储)集成CSP电厂性能的第一项努力,该性能可以帮助评估LTES系统对熔融盐电厂CSP电厂发电的影响,成本和性能。

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