高速公路绿电自洽制氢一体化加氢网络站点选址规划

师瑞峰, 孙昊, 陈晓溪, 贾利民

太阳能学报 ›› 2025, Vol. 46 ›› Issue (2) : 142-155.

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太阳能学报 ›› 2025, Vol. 46 ›› Issue (2) : 142-155. DOI: 10.19912/j.0254-0096.tynxb.2023-1685

高速公路绿电自洽制氢一体化加氢网络站点选址规划

  • 师瑞峰1,2, 孙昊1, 陈晓溪3, 贾利民2,4
作者信息 +

HIGHWAY GREEN POWER SELF-CONSISTENT HYDROGEN PRODUCTION INTEGRATED HYDROGEN REFUELLING NETWORK SITE SELECTION PLANNING

  • Shi Ruifeng1,2, Sun Hao1, Chen Xiaoxi3, Jia Limin2,4
Author information +
文章历史 +

摘要

该文提出高速公路绿色氢能制-储-用一体化系统应用场景;构建考虑系统中氢能制取、储存、运输以及建设运营投资等环节成本与考虑选址偏好的用户侧用氢成本的多目标规划数学模型;以中国西部某区域高速公路网为典型案例,验证该文方法体系的有效性,研究结果表明,模型可有效获取兼具供给侧与用户侧综合效益最优性的加氢站选址规划方案。

Abstract

The application scenario of green highway hydrogen energy production-storage-use integration system is proposed in this paper; a multi-objective planning mathematical model that considers the cost of hydrogen energy production, storage, transportation, construction and operation investment in the system and the cost of user-side hydrogen use in the consideration of siting preference is constructed; and the effectiveness of this paper’s methodology system is verified by taking the highway network of a certain region in the western part of China as a typical case. The results show that the proposed model can effectively obtain a hydrogen refueling station location planning scheme with the optimization of both supply-side and user-side comprehensive benefits.

关键词

氢能 / 绿色能源 / 多目标优化 / 加氢站 / 选址偏好 / 交通与能源融合

Key words

hydrogen energy / green energy / multiobjective optimization / hydrogen refueling station / site preference / transportation and energy integration

引用本文

导出引用
师瑞峰, 孙昊, 陈晓溪, 贾利民. 高速公路绿电自洽制氢一体化加氢网络站点选址规划[J]. 太阳能学报. 2025, 46(2): 142-155 https://doi.org/10.19912/j.0254-0096.tynxb.2023-1685
Shi Ruifeng, Sun Hao, Chen Xiaoxi, Jia Limin. HIGHWAY GREEN POWER SELF-CONSISTENT HYDROGEN PRODUCTION INTEGRATED HYDROGEN REFUELLING NETWORK SITE SELECTION PLANNING[J]. Acta Energiae Solaris Sinica. 2025, 46(2): 142-155 https://doi.org/10.19912/j.0254-0096.tynxb.2023-1685
中图分类号: TM919   

参考文献

[1] 李亮荣, 彭建, 付兵, 等. 碳中和愿景下绿色制氢技术发展趋势及应用前景分析[J]. 太阳能学报, 2022, 43(6): 508-520.
LI L R, PENG J, FU B, et al.Development trend and application prospect of green hydrogen production technologies under carbon neutrality vision[J]. Acta energiae solaris sinica, 2022, 43(6): 508-520.
[2] MARRERO Á S, MARRERO G A, GONZÁLEZ R M, et al. Convergence in road transport CO2 emissions in Europe[J]. Energy economics, 2021, 99: 105322.
[3] 殷伊琳. 我国氢能产业发展现状及展望[J]. 化学工业与工程, 2021, 38(4): 78-83.
YIN Y L.Present situation and prospect of hydrogen energy industry[J]. Chemical industry and engineering, 2021, 38(4): 78-83.
[4] 刘峻, 赵汪, 高学强, 等. 全球加氢站产业、技术及标准进展综述[J]. 太阳能学报, 2022, 43(6): 362-372.
LIU J, ZHAO W, GAO X Q, et al.Review on advances in industry, technology, and standard of global hydrogen refuelling stations[J]. Acta energiae solaris sinica, 2022, 43(6): 362-372.
[5] 魏凤, 任小波, 高林, 等. 碳中和目标下美国氢能战略转型及特征分析[J]. 中国科学院院刊, 2021, 36(9): 1049-1057.
WEI F, REN X B, GAO L, et al.Analysis on transformation and characteristics of American hydrogen energy strategy under carbon neutralization goal[J]. Bulletin of Chinese Academy of Sciences, 2021, 36(9): 1049-1057.
[6] 丁曼. 日本氢能战略的特征、动因与国际协调[J]. 现代日本经济, 2021, 40(4): 28-41.
DING M.Characteristics, motivation, international coordination of Japan’s hydrogen strategy[J]. Contemporary economy of Japan, 2021, 40(4): 28-41.
[7] CUEVAS F, ZHANG J X, LATROCHE M.The vision of France, Germany, and the European Union on future hydrogen energy research and innovation[J]. Engineering, 2021, 7(6): 31-39.
[8] 毕珍珍. 日本的“氢能源基本战略” 与全球气候治理[J]. 国际论坛, 2019, 21(2): 140-154, 160.
BI Z Z.Japan’s “basic hydrogen strategy” and global climate governance[J]. International forum, 2019, 21(2): 140-154, 160.
[9] LI H W, NISHIMIYA N.Insight from Japan’s hydrogen strategy and activities[J]. Engineering, 2021, 7(6): 722-725.
[10] 陈英姿, 刘建达. 日本车用氢能的产业发展及支持政策[J]. 现代日本经济, 2021, 40(2): 80-94.
CHEN Y Z, LIU J D.The industrial development and supporting policies for hydrogen energy for vehicles in Japan[J]. Contemporary economy of Japan, 2021, 40(2): 80-94.
[11] 王江涛. 多种形式加氢合建站建设优化与技术研究[J]. 现代化工, 2022, 42(1): 7-12.
WANG J T.Construction optimization and technical research for various types of combined hydrogen fueling station[J]. Modern chemical industry, 2022, 42(1): 7-12.
[12] LIN R H, YE Z Z, WU B D.A review of hydrogen station location models[J]. International journal of hydrogen energy, 2020, 45(39): 20176-20183.
[13] LI Y S, CUI F M, LI L F.An integrated optimization model for the location of hydrogen refueling stations[J]. International journal of hydrogen energy, 2018, 43(42): 19636-19649.
[14] LIN R H, YE Z Z, GUO Z Y, et al.Hydrogen station location optimization based on multiple data sources[J]. International journal of hydrogen energy, 2020, 45(17): 10270-10279.
[15] SUN H R, HE C M, YU X Z, et al.Optimal siting and sizing of hydrogen refueling stations considering distributed hydrogen production and cost reduction for regional consumers[J]. International journal of energy research, 2019, 43(9): 4184-4200.
[16] FUSE M, NOGUCHI H, SEYA H.Near-term location planning of hydrogen refueling stations in Yokohama City[J]. International journal of hydrogen energy, 2021, 46(23): 12272-12279.
[17] KUVVETLI Y.Multi-objective and multi-period hydrogen refueling station location problem[J]. International journal of hydrogen energy, 2020, 45(55): 30845-30858.
[18] 田立霞, 黄元生, 赵恒凤, 等. 均衡条件下加氢站的选址定容优化[J]. 河北大学学报(自然科学版), 2021, 41(3): 245-250.
TIAN L X, HUANG Y S, ZHAO H F, et al.Location determination of hydrogen refueling station based on equilibrium condition[J]. Journal of Hebei University (natural science edition), 2021, 41(3): 245-250.
[19] 项寅. 考虑产业布局和用户满意度的氢能源汽车加氢网络优化模型[J]. 中国管理科学, 2023, 31(5): 164-175.
XIANG Y.Hydrogenation infrastructure network optimization considering industrial layout and customer satisfaction[J]. Chinese journal of management science, 2023, 31(5): 164-175.
[20] HE C M, SUN H R, XU Y, et al.Hydrogen refueling station siting of expressway based on the optimization of hydrogen life cycle cost[J]. International journal of hydrogen energy, 2017, 42(26): 16313-16324.
[21] SUN H R, HE C M, WANG H K, et al.Hydrogen station siting optimization based on multi-source hydrogen supply and life cycle cost[J]. International journal of hydrogen energy, 2017, 42(38): 23952-23965.
[22] KIM H, EOM M, KIM B I.Development of strategic hydrogen refueling station deployment plan for Korea[J]. International journal of hydrogen energy, 2020, 45(38): 19900-19911.
[23] WANG Z, WANG D X, ZHAO F, et al.Hydrogen refueling stations and carbon emission reduction of coastal expressways: a deployment model and multi-scenario analysis[J]. Journal of marine science and engineering, 2022, 10(7): 992.
[24] 周军, 常恒, 梁光川, 等. 基于氢供应链优化的加氢站选址与用氢成本分析[J]. 可再生能源, 2023, 41(7): 861-867.
ZHOU J, CHANG H, LIANG G C, et al.Hydrogen station location and hydrogen consumption cost analysis based on hydrogen supply chain optimization[J]. Renewable energy resources, 2023, 41(7): 861-867.
[25] 李建林, 梁忠豪, 李光辉, 等. 太阳能制氢关键技术研究[J]. 太阳能学报, 2022, 43(3): 2-11.
LI J L, LIANG Z H, LI G H, et al.Analysis of key technologies for solar hydrogen production[J]. Acta energiae solaris sinica, 2022, 43(3): 2-11.
[26] SHI R F, GAO Y Q, NING J, et al.Research on highway self-consistent energy system planning with uncertain wind and photovoltaic power output[J]. Sustainability, 2023, 15(4): 3166.
[27] 李菱, 李燕青, 姚玉海, 等. 基于遗传算法的电动汽车充电站的布局规划[J]. 华东电力, 2011, 39(6): 1004-1006.
LI L, LI Y Q, YAO Y H, et al.Layout planning of electric vehicle charging stations based on genetic algorithm[J]. East China electric power, 2011, 39(6): 1004-1006.
[28] 邢璐. 氢能重卡应用示范的经济性分析和商业模式探讨[J]. 当代石油石化, 2021, 29(8): 6-11, 50.
XING L.Research on hydrogen heavy truck demonstration from perspective of economy and business[J]. Petroleum & petrochemical today, 2021, 29(8): 6-11, 50.
[29] 丁镠, 唐涛, 王耀萱, 等. 氢储运技术研究进展与发展趋势[J]. 天然气化工: C1化学与化工, 2022, 47(2): 35-40.
DING L, TANG T, WANG Y X, et al.Research progress and development trend of hydrogen storage and transportation technology[J]. Natural gas chemical industry, 2022, 47(2): 35-40.
[30] 师瑞峰, 周泓. 一种求解双目标flow shop排序问题的进化算法[J]. 管理科学学报, 2007, 10(5): 11-20, 27.
SHI R F, ZHOU H.Escalating evolutionary algorithm with application to bi-objective flow shop scheduling problems[J]. Journal of management sciences in China, 2007, 10(5): 11-20, 27.

基金

国家重点研发计划(2021YFB2601300); 中央高校基本科研业务费专项资金(2023JC007)

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