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Solar Hybrid Power Plants: Solar Energy Contribution in Reaching Full Dispatchability and Firmness

机译:太阳能混合动力厂:太阳能贡献达到全部调度性和坚定性

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Renewable energies for electricity generation have always been considered as a risk for the electricity system due to its lack of dispatchability and firmness. Renewable energies penetration is constrained to strong grids or else its production must be limited to ensure grid stability, which is kept by the usage of hydropower energy or fossil-fueled power plants. CSP technology has an opportunity to arise not only as a dispatchable and firm technology, but also as an alternative that improves grid stability. To achieve that objective, solar hybrid configurations are being developed, being the most representative three different solutions: SAPG, ISCC and HYSOL. A reference scenario in Kingdom of Saudi Arabia (KSA) has been defined to compare these solutions, which have been modelled, simulated and evaluated in terms of dispatchability and firmness using ratios defined by the authors. The results show that: a) SAPG obtains the highest firmness KPI values, but no operation constraints have been considered for the coal boiler and the solar energy contribution is limited to 1.7%, b) ISCC provides dispatchable and firm electricity production but its solar energy contribution is limited to a 6.4%, and c) HYSOL presents the higher solar energy contribution of all the technologies considered: 66.0% while providing dispatchable and firm generation in similar conditions as SAPG and ISCC.
机译:由于其缺乏繁荣和坚定性,可再生能源的发电能量被认为是电力系统的风险。可再生能源渗透受到强大的电网的限制,否则其生产必须限制,以确保电网稳定性,通过水电能量或化石燃料发电厂的使用保持。 CSP技术有机会不仅作为可调度和坚实的技术而产生的,而且还可以作为提高电网稳定性的替代方案。为实现这一目标,正在开发太阳能混合配置,是最具代表性的三种不同解决方案:SAPG,ISCC和HYSOL。已经定义了沙特阿拉伯王国(KSA)的参考场景,以比较这些解决方案,这些解决方案已经通过作者定义的比率来模拟,模拟和评估。结果表明:a)SAPG获得最高的基本性KPI值,但没有考虑用于煤锅炉的操作约束,太阳能贡献限制为1.7%,B)ISCC提供可调度和坚固的电力生产,而是其太阳能贡献仅限于6.4%,C)Hysol介绍了所有技术所考虑的太阳能贡献:66.0%,同时在与SAPG和ISCC类似的条件下提供分配和坚实的生成。

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