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    可再生能源制氢与波动氢气负荷耦合系统的调控策略

    Regulating strategies for coupling systems to match hydrogen production using renewable energy with fluctuating hydrogen demands

    • 摘要: 针对可再生能源制氢与波动性氢气负荷耦合的系统,在满足波动氢气负荷需求的前提下,提出通过可再生能源发电入网调整发电侧和通过氢气公用工程调整氢气负荷侧波形的协同调控模型,目的在于提高可再生能源耦合波动性氢气负荷需求的系统经济性,并研究需求侧氢气负荷的波动幅度和周期变化波动等特性对系统经济性和设计特性的影响,以及不同的调控策略对系统经济性的影响。研究表明:氢气负荷侧波形的幅度和周期变化对系统的经济性和容量配置影响显著;氢气公用工程调节和电力入网调节的调控策略可以有效降低系统的总费用。

       

      Abstract: In order to regulate coupling systems for renewable energy and fluctuating hydrogen demands based on fluctuating hydrogen requirements, a cooperative regulating model was proposed with the profile of renewable energy generation side adjusted by grid connection, and the profile of the hydrogen demand was adjusted by hydrogen utilities. Effects of variations of amplitude and period of hydrogen demand on the economy and design characteristics of the system were investigated under different regulating strategies. The results show that the variations of amplitude and period of the hydrogen demand have a significant impact on the economy and capacity configuration of the system. The cooperative regulating strategies of hydrogen utilities and grid connection can effectively reduce the total cost of the system.

       

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