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Alternative cycles based on carbon dioxide for central receiver solar power plants

机译:中央接收器太阳能发电厂的基于二氧化碳的替代循环

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Research in concentrated thermal solar power plants of all types and, in particular, those based on central receiver, namely solar tower plants, has experienced great impetus in the last decade, reaching full commercial operation with the PS10 plant in Spain. In spite of previous demonstration plants testing different receivers and power cycle layouts, this first commercial power plant adopted a cavity receiver generating saturated steam and therefore penalising cycle efficiency in order to gain plant reliability. According to the experience gained, if a competitive Levelised Cost of Electricity is to be reached, capital and maintenance costs must be reduced and efficiencies must be increased. To achieve these goals, modifying the power cycle is deemed essential, whether using superheated steam or alternative fluids. In this work, the use of supercritical and transcritical carbon dioxide cycles for this application is proposed. Three different cycles are considered, the first two of which are stand-alone closed cycle gas turbines using carbon dioxide. The third proposal is a combined cycle that comprises a topping carbon dioxide gas turbine and a bottoming Organic Rankine Cycle. Preliminary results show that these cycles are promising technologies for solar tower plants, having the potential to compete in terms of efficiency and costs with other conventional technologies.
机译:在过去的十年中,对各种类型的集中式热太阳能发电厂的研究,尤其是基于中央接收器的太阳能发电厂的研究,在西班牙PS10电厂的全面商业运营中获得了巨大的推动力。尽管之前有示范工厂测试了不同的接收器和电源循环布局,但该第一家商业发电厂仍采用腔式接收器来产生饱和蒸汽,因此为了提高设备可靠性而降低了循环效率。根据所获得的经验,如果要达到具有竞争力的均等化电力成本,则必须降低资本和维护成本,并必须提高效率。为了实现这些目标,无论使用过热蒸汽还是替代流体,都必须修改功率循环。在这项工作中,提议将超临界和超临界二氧化碳循环用于该应用。考虑了三个不同的循环,其中前两个是使用二氧化碳的独立式封闭循环燃气轮机。第三个建议是一个联合循环,包括一个顶部二氧化碳燃气轮机和一个底部有机朗肯循环。初步结果表明,这些循环对于太阳能塔装置是有前途的技术,具有在效率和成本方面与其他常规技术竞争的潜力。

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