Impact of wind speed distribution and management strategy on hydrogen production from wind energy

被引:23
作者
Liponi, Angelica [1 ]
Frate, Guido Francesco [1 ]
Baccioli, Andrea [1 ]
Ferrari, Lorenzo [1 ]
Desideri, Umberto [1 ]
机构
[1] Univ Pisa, Dept Energy Syst Terr & Construct Engn, Pisa, Italy
关键词
Green hydrogen; Battery; Wind energy; Operating fluctuations; Management strategy; Wind speed distribution; POWER-TO-GAS; WATER ELECTROLYSIS; STORAGE; OPTIMIZATION; SYSTEMS;
D O I
10.1016/j.energy.2022.124636
中图分类号
O414.1 [热力学];
学科分类号
摘要
Electrolytic hydrogen production using renewable sources can play a central role in global decarbonization. However, the direct coupling of electrolyzers with renewable energies can cause frequent shutdowns and high production fluctuations unless adopting electrical storage systems or using electricity from the grid that is generally not completely decarbonized. In this study, a system consisting of a wind turbine, short-term battery storage, and an alkaline electrolyzer was analyzed through annual simulations in MATLAB. A power management strategy sets the electrolyzer and battery operating conditions. Firstly, several battery and electrolyzer sizes were investigated for a given wind site for three scenarios (0%grid, 20%grid, and 100%grid) in which the grid guarantees the electrolyzer operation at a minimum load of 0%, 20%, and 100%, respectively. Secondly, the effect of the wind speed distribution on the system performance was investigated by comparing sixteen different wind sites in the 0%grid scenario. The battery presence always led to a LCOH increase. The 20%grid scenario represented a good compromise between the minimization of specific CO2 emissions, and the minimization of LCOH (that was always lower compared to the 0%grid scenario and the lowest without battery). The shape parameter of the fittedWeibull wind speed distribution did not affect the system. Instead, a greater scale parameter led to both greater hydrogen production and a lower LCOH. (c) 2022 Elsevier Ltd. All rights reserved.
引用
收藏
页数:15
相关论文
共 31 条
  • [11] Optimal sizing design of an isolated stand-alone hybrid wind-hydrogen system for a zero-energy house
    Firtina-Ertis, Irem
    Acar, Canan
    Erturk, Ercan
    [J]. APPLIED ENERGY, 2020, 274
  • [12] Techno-economic sizing of a battery energy storage coupled to a wind farm: an Italian case study
    Frate, Guido Francesco
    Pena Carro, Paula
    Ferrari, Lorenzo
    Desideri, Umberto
    [J]. ATI 2018 - 73RD CONFERENCE OF THE ITALIAN THERMAL MACHINES ENGINEERING ASSOCIATION, 2018, 148 : 447 - 454
  • [13] Non-Ideal Linear Operation Model for Li-Ion Batteries
    Gonzalez-Castellanos, Alvaro Jose
    Pozo, David
    Bischi, Aldo
    [J]. IEEE TRANSACTIONS ON POWER SYSTEMS, 2020, 35 (01) : 672 - 682
  • [14] Gupta M, 2018, US FRONT METER ENERG
  • [15] Optimizing investments in coupled offshore wind -electrolytic hydrogen storage systems in Denmark
    Hou, Peng
    Enevoldsen, Peter
    Eichman, Joshua
    Hu, Weihao
    Jacobson, Mark Z.
    Chen, Zhe
    [J]. JOURNAL OF POWER SOURCES, 2017, 359 : 186 - 197
  • [16] IRENA, 2018, RENEWABLE POWER GENE
  • [17] IRENA, 2017, Electricity Storage and Renewables: Costs and Markets to 2030
  • [18] leitwind, LEITWIND TECHNICAL D
  • [19] Liponi Angelica, 2022, E3S Web of Conferences, V334, DOI 10.1051/e3sconf/202233401001
  • [20] Liponi A, 2021, P ECOS THE 34 INT C