Transcritical Cycles With CO2-based Mixtures for CSP Applications: An Overview of the SCARABEUS Findings

E. Morosini, P. Rodriguez de Arriba, Salma I. Salah, Viktoria Illyés, Xavier Guerif, Marco Ruggiero, G. Di Marcoberardino, G. Manzolini
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Abstract

This work summarizes the methodology developed within the H2020 EU project SCARABEUS for the analysis of innovative CO2-based mixtures used as working fluid in transcritical cycles for CSP applications. By adding a specific quantity of carefully selected dopant to CO2 it is possible to reach a high mixture critical temperature, suitable for air cooled cycles at very high minimum temperature in hot environments with high efficiencies. Along the methodology, some results related to the design of the turbine and the heat exchangers for the innovative mixtures are presented, including a focus on the system integration between the power block and the solar plant: as such, these results can be considered as interesting research outcomes to widen the knowledge on innovative solutions for efficient power cycles. The new power cycles are foreseen to drastically increase the profitability and cut the specific cost of CSP systems with respect to the state-of-the-art
用于 CSP 应用的基于 CO2 的混合物的跨临界循环:SCARABEUS 研究结果概述
这项工作总结了 H2020 欧盟项目 SCARABEUS 中开发的方法,用于分析在 CSP 应用的跨临界循环中用作工作流体的创新型二氧化碳混合物。通过在二氧化碳中添加特定数量的精心挑选的掺杂剂,有可能达到较高的混合物临界温度,适合在高温环境中以极高的最低温度和较高的效率进行空气冷却循环。根据该方法,还介绍了与创新混合物的涡轮机和热交换器设计相关的一些成果,包括重点关注动力模块和太阳能发电厂之间的系统集成:因此,这些成果可被视为有趣的研究成果,可拓宽有关高效动力循环创新解决方案的知识。与最先进的 CSP 系统相比,新的动力循环预计将大幅提高盈利能力并降低具体成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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