布莱顿循环
工艺工程
热能储存
朗肯循环
集中太阳能
资本成本
兰金度
环境科学
发电
热效率
可再生能源
工程类
涡轮机
机械工程
功率(物理)
热力学
化学
电气工程
物理
有机化学
燃烧
作者
Dhinesh Thanganadar,Francesco Fornarelli,Sergio Mario Camporeale,Faisal Asfand,Jonathon Gillard,Kumar Patchigolla
出处
期刊:Energy
[Elsevier BV]
日期:2021-08-16
卷期号:238: 121755-121755
被引量:30
标识
DOI:10.1016/j.energy.2021.121755
摘要
Integration of thermal energy storage with concentrated solar power (CSP) plant aids in smoothing of the variable energy generation from renewable sources. Supercritical carbon dioxide (sCO2) cycles can reduce the levelised cost of electricity of a CSP plant through its higher efficiency and compact footprint compared to steam-Rankine cycles. This study systematically integrates nine sCO2 cycles including two novel configurations for CSP applications with a two-tank sensible heat storage system using a multi-objective optimisation. The performance of the sCO2 cycles is benchmarked against the thermal performance requirement of an ideal power cycle to reduce the plant overnight capital cost. The impacts of the compressor inlet temperature (CIT) and maximum turbine inlet temperature (TIT) on the cycle selection criteria are discussed. The influence of the cost function uncertainty on the selection of the optimal cycle is analysed using Monte-Carlo simulation. One of the novel cycle configurations (C8) proposed can reduce the overnight capital cost by 10.8% in comparison to a recompression Brayton cycle (C3) for a CIT of 55 °C and TIT of 700 °C. This work describes design guidelines facilitating the development/selection of an optimal cycle for a CSP application integrated with two-tank thermal storage.
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