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Optimal sizing of wind-hydrogen system considering hydrogen demand and trading modes

机译:考虑氢气需求和交易方式的风能制氢系统的最佳尺寸

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In order to make full use of renewable energy and improve the utilization of wind power, a new joint optimization scheme of the wind-hydrogen system coupled with transmission project is proposed in this paper, in which wind power is reasonably allocated for grid integration and for hydrogen production. Aiming at maximize the annul wind-hydrogen system benefit, the optimal sizes of wind power transmission project and hydrogen system are obtained under different hydrogen production modes, hydrogen trading modes and hydrogen demand levels. In addition, the penalty cost of wind curtailment and hydrogen supply shortage and the system environmental benefits are taken into account. Results show: during the long-term of insufficient of wind power, it is better to produce hydrogen using wind power and grid-assisted power to avoid hydrogen supply shortage; considering the future increase of hydrogen demand, the optimal supply number of hydrogen refueling stations in the wind-hydrogen system is two. Also, the low utilization of fuel cells means that the benefit from regeneration cannot offset the high cost, which leads to the abnegation of fuel cells in the wind-hydrogen system. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:为了充分利用可再生能源,提高风能的利用率,提出了一种新的风氢系统联合输电工程联合优化方案,合理分配风能用于电网集成和电网建设。制氢。为了最大限度地消除年产风能制氢系统的利益,在不同的制氢模式,制氢模式和制氢需求水平下,获得了最佳的风力发电项目和制氢系统规模。此外,还考虑了减少风能和氢供应短缺的惩罚成本以及系统的环境效益。结果表明:在长期风能不足的情况下,最好利用风能和并网发电来制氢,避免氢供不足。考虑到未来氢气需求的增长,风-氢气系统中加氢站的最佳供应数量为两个。而且,燃料电池的低利用率意味着再生的好处不能抵消高成本,这导致了风-氢系统中燃料电池的废止。 (C)2020 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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