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Autonomous dual-mode CAES systems for maximum wind energy contribution in remote island networks

机译:自主的双模CAES系统可在偏远岛屿网络中最大程度地贡献风能

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摘要

Wind parks operating in autonomous island networks with limited capacity of wind energy absorption are faced with considerable energy curtailments. To encounter the existing situation, the concept of wind energy storage suggests an alternative worth investigating. On the other hand, the expansion of natural gas networks in big islands, where remarkable wind potential may be met as well, questions the future of wind energy. To recover wind energy rejections and benefit from the introduction of natural gas, the adoption of wind-compressed air energy storage (Wind-CAES) systems is currently investigated. More specifically, the proposed solution examines the operation of a dual-mode CAES configuration in collaboration with private wind parks operating on the island of Crete. The system operation is configured so that guaranteed amounts of energy may be delivered to the local network on a daily basis, during certain peak demand hours. Based on a simulation algorithm for the dual-mode CAES system, configurations ensuring maximum recovery of wind energy curtailments may be obtained, while the proposed solution considerably reduces fuel consumption, otherwise required to operate conventional gas turbine plants.
机译:在自主岛状网络中运行且风能吸收能力有限的风电场面临着大量的能源削减。为了应对现有情况,风能存储的概念提出了一种值得研究的替代方案。另一方面,大岛屿的天然气网络的扩张也可能满足巨大的风能潜力,这对风能的未来提出了质疑。为了恢复风能排放并从引入天然气中受益,目前正在研究采用风压缩空气储能(Wind-CAES)系统。更具体地说,提出的解决方案与在克里特岛上运营的私人风电场合作,研究了双模式CAES配置的运行情况。配置系统操作,以便可以在某些高峰需求时间内每天将保证量的能量传递到本地网络。基于用于双模式CAES系统的模拟算法,可以获得确保最大程度地回收风能缩减的配置,而所提出的解决方案可显着降低燃料消耗,否则将需要运行常规燃气轮机电厂。

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