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首页> 外文期刊>E3S Web of Conferences >Optimal Indirect Integration of Steam Rankine Cycles in Concentrated Solar Power Coupled with Thermochemical Storage
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Optimal Indirect Integration of Steam Rankine Cycles in Concentrated Solar Power Coupled with Thermochemical Storage

机译:浓缩太阳能电力耦合热化学储存的最佳间接整合

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Storing energy in thermo-chemical form is a promising alternative for renewable energy sources and one of the fields that could exploit its advantages is constituted by Concentrated Solar Power (CSP). High efficiencies, high energy densities, long-term storage and dispatchability in power generation could be tackled with the employment of a Calcium-Looping in a central tower CSP plant. Although Brayton cycles based on sCO2 and He probably represent the most efficient option, it can be interesting to investigate the integration of Steam Rankine cycles because of the lower costs and the higher stage of development that characterize this technology. The present work has the purposes of studying this kind of integration and analyze the system in both energy and economic terms. To perform a comprehensive investigation, the power block layout and its thermal feeding strategy are included in the analysis and optimized. In addition, a multi-objective optimization is performed to evaluate possible compromises between the two most important aspects related to the entire power plant.
机译:以热化学形式储存能量是可再生能源的有希望的替代方案,也可以利用其优势的一个领域由集中的太阳能(CSP)构成。在中央塔CSP厂中的钙环中,可以解决发电中的高效率,高能量密度,长期储存和调度性。虽然基于SCO2的布雷顿周期,他可能代表最有效的选择,但由于成本较低和表征这项技术的发展阶段的较高阶段,它可能很有意思。目前的工作具有研究这种整合并分析能量和经济方面的系统。为了进行全面的调查,可以在分析和优化中包括电源块布局及其热馈送策略。另外,执行多目标优化以评估与整个发电厂相关的两个最重要的方面之间的可能妥协。

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