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DISTRIBUTED POWER GENERATION AND ENERGY STORAGE FROM RENEWABLES USING A HYDROGEN OXYGEN TURBINE

机译:使用氢氧涡轮机的可再生能源的分布式发电和储能

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Renewable energy is best utilized when partnered with energy storage to balance the variable supply with daily and seasonal grid demands. At the distribution level, in addition to meeting power demands, there is a need to maintain system voltage and reactive power / VAR control. Rotating machinery is most effective for VAR control at the substation level. This paper presents a patented MW-scale system that provides power from a hydrogen-oxygen-fueled combined cycle power plant, where the hydrogen and oxygen are generated from electrolysis using renewable wind or solar power. The steam generated from combustion is the working fluid for the power plant, in a closed loop system. Also presented is a discussion on a patented strategy for safe combustion and handling of hydrogen and oxygen, as well as how to use this combustion strategy for flame and post flame temperature control. Finally, a preliminary benefits analysis illustrates the various energy storage and distributed generation benefits that are possible with this system. Depending on the storage approach, energy storage - charge and discharge durations - of 4 to greater than 24 hours are possible, much longer than most battery energy storage systems. Benefits include not only peak shaving and VAR control, but also grid balancing services to avoid the "spilling" of excess renewable power when supply exceeds demand and fast ramping in the evening hours.
机译:在与能量存储器合作时,可再生能源最佳利用以平衡每日和季节性网格需求的可变电源。在分配水平,除了满足电力需求外,还需要维持系统电压和无功功率/ var控制。旋转机械对变电站水平的VAR控制最有效。本文介绍了一种专利的MW级系统,提供来自氢气燃料组合循环发电厂的功率,其中氢气和氧气由可再生风或太阳能电解产生电解。由燃烧产生的蒸汽是电厂的工作流体,在闭环系统中。还提出了关于氢气和氧气的安全燃烧和处理的专利策略的讨论,以及如何使用这种燃烧策略进行火焰和后火焰温度控制。最后,初步效益分析说明了这种系统可能的各种能量存储和分布式的益处。根据存储方法,储能 - 充电和放电持续时间 - 比大多数电池储能系统长得多。福利不仅包括峰值剃须和var控制,还包括电网平衡服务,以避免当供应超过晚上需求和快速斜坡时“溢出”过度可再生能力。

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