4.7 Article

Multi-objective capacity programming and operation optimization of an integrated energy system considering hydrogen energy storage for collective energy communities

期刊

ENERGY CONVERSION AND MANAGEMENT
卷 268, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.enconman.2022.116057

关键词

Integrated energy system; Hydrogen energy storage and utilization; Capacity programming; Energy management; Operation strategy

资金

  1. Basic Science Center Program for Ordered Energy Conversion of the National Natural Science Foundation of China [51888103]
  2. K. C. Wong Education Foundation

向作者/读者索取更多资源

A novel grid-linked integrated energy system design combined with hydrogen energy storage has been proposed for collective energy communities. The optimal configuration and indicators were obtained based on comprehensive assessment, and the results show that using surplus electricity to produce hydrogen for consumers under hybrid operation strategy is the best choice.
A novel grid-linked integrated energy system design combined with hydrogen energy storage for collective energy communities has been proposed and analyzed, which is driven by natural gas and solar energy to achieve coordinated supply of cooling, heating and power. The models of energy devices were established in detail, and a multi-variable multi-objective mixed integer nonlinear programming coupling maximum rectangle method and particle swarm optimization was adopted. The optimal configuration and indicators were obtained based on the comprehensive assessment of energy, economics, environment and grid dependence. A hybrid operation strategy following objective function has been developed to improve the overall performance. A real case in Xi'an of Northwest China was chosen to study according to the simulated load demand, three operation strategies were compared, hourly energy management was assessed, and four electrical energy storage schemes were contrasted. Finally, the scheme that uses surplus electricity to electrolyze water for producing hydrogen to supply consumers under hybrid operation strategy is the optimum selection and the annual hydrogen supply is as high as 81,673 kg. Besides, the effects of main device efficiencies, natural gas price and electricity price on system performance were discussed. The results indicated that the power generation efficiency of gas turbine and market factors have the most conspicuous impact on the proposed system. This work may provide theoretical guidance for relevant research and application.

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