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首页> 外文期刊>Journal of solar energy engineering >Economic Optimization of a Concentrating Solar Power Plant With Molten-Salt Thermocline Storage
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Economic Optimization of a Concentrating Solar Power Plant With Molten-Salt Thermocline Storage

机译:熔融盐热跃线存储的集中式太阳能发电厂的经济优化

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摘要

System-level simulation of a molten-salt thermocline tank is undertaken in response to year-long historical weather data and corresponding plant control. Such a simulation is enabled by combining a finite-volume model of the tank that includes a sufficiently faithful representation at low computation cost with a system-level power tower plant model. Annual plant performance of a 100 MW_e molten-salt power tower plant is optimized as a function of the thermocline tank size and the plant solar multiple (SM). The effectiveness of the thermocline tank in storing and supplying hot molten salt to the power plant is found to exceed 99% over a year of operation, independent of tank size. The electrical output of the plant is characterized by its capacity factor (CF) over the year, which increases with solar multiple and thermocline tank size albeit with diminishing returns. The economic performance of the plant is characterized with a levelized cost of electricity (LCOE) metric. A previous study conducted by the authors applied a simplified cost metric for plant performance. The current study applies a more comprehensive financial approach and observes a minimum cost of 12.2ø/kWh_e with a solar multiple of 3 and a thermocline tank storage capacity of 16 h. While the thermocline tank concept is viable and economically feasible, additional plant improvements beyond those pertaining to storage are necessary to achieve grid parity with fossil fuels.
机译:响应长达一年的历史天气数据和相应的工厂控制,对熔盐温床进行了系统级仿真。通过将储罐的有限体积模型与系统级电站设备模型进行组合,可以实现这种模拟,该模型包括以低计算成本获得的足够真实的表示。根据温跃层储罐尺寸和电站太阳能倍数(SM)来优化100 MW_e熔融盐电站塔的年度工厂性能。已发现,在运行的一年中,与罐大小无关,温跃层罐在向电厂存储和供应热熔盐方面的效率超过99%。该厂的电力输出以其一年中的容量因子(CF)为特征,尽管随着收益的减少,它随着太阳能倍数和温跃层水箱尺寸的增加而增加。该工厂的经济绩效以平均电费(LCOE)指标为特征。作者之前进行的一项研究对工厂绩效采用了简化的成本指标。当前的研究采用了更全面的财务方法,并观察到最低成本为12.2ø/ kWh_e,太阳能倍数为3,温跃层储罐容量为16h。尽管温跃层储罐概念可行且在经济上可行,但除与存储有关的工厂改进外,还有必要对工厂进行其他改进,以实现与化石燃料的电网均等。

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