西安交通大学绿色氢电全国重点实验室,陕西 西安 710049
李倩倩(1988—),女,博士,副教授,qianqianli@xjtu.edu.cn
收稿:2026-04-16,
修回:2026-06-08,
录用:2026-06-09,
移动端阅览
李倩倩, 雷博涵, 袁旭浩, 等. 天然气、氢气及掺氢天然气埋地管道泄漏研究进展[J/OL]. 化工学报, 2026.
LI Qianqian, LEI Bohan, YUANG Xuhao, et al. Research progress on leakage of underground pipelines transporting natural gas, hydrogen, and hydrogen-blended natural gas[J/OL]. CIESC Journal, 2026.
李倩倩, 雷博涵, 袁旭浩, 等. 天然气、氢气及掺氢天然气埋地管道泄漏研究进展[J/OL]. 化工学报, 2026. DOI: 10.11949/0438-1157.20260552.
LI Qianqian, LEI Bohan, YUANG Xuhao, et al. Research progress on leakage of underground pipelines transporting natural gas, hydrogen, and hydrogen-blended natural gas[J/OL]. CIESC Journal, 2026. DOI: 10.11949/0438-1157.20260552.
在“双碳”目标与能源结构转型的驱动下,利用天然气管网进行掺氢输送和建设专用纯氢管道已成为氢能大规模储运的核心路径。氢能大规模输运过程中主要通过埋地管道输运。但由于氢分子直径极小、扩散能力远强于甲烷且易引发金属氢脆,其埋地环境下的泄漏安全风险成为研究的核心瓶颈。本文系统综述了天然气、氢气及天然气掺氢埋地管道当前的理论、实验和模拟研究进展。进展内容主要包括详细对比因氢气与天然气的物性区别带来的差异性埋地泄漏动力学规律,从实验室缩尺实验到全尺寸埋地泄漏实验的平台建设现状,高压泄漏气体冲破土壤层形成空腔的力学过程及实验观测结果以及采用计算流体动力学针对各种场景下的泄漏过程的数值模拟研究。最后对现阶段埋地管道研究存在的问题进行了总结,并在实验数据工况拓展、数值模拟方法及埋地管道场景方面展望了未来的研究方向。
Driven by the “dual carbon” goals and the energy transition
utilizing natural gas pipeline networks for hydrogen-blended transmission and constructing dedicated pure hydrogen pipelines have become the core pathways for the large-scale storage and transportation of hydrogen. Hydrogen is primarily transported via underground pipelines during large-scale transmission. However
due to the extremely small diameter of hydrogen molecules
their diffusion capacity far exceeding that of methane
and their tendency to cause hydrogen embrittlement in metals
the safety risks associated with leaks in underground environments have become a key bottleneck in research. This paper provides a systematic review of current theoretical
experimental
and simulation research on natural gas
hydrogen
and hydrogen-blended natural gas underground pipelines. The review primarily covers detailed comparisons of the distinct underground leakage kinetics resulting from the differences in the physical properties of hydrogen and natural gas; the current status of platform development ranging from laboratory-scale experiments to full-scale underground leakage tests; the mechanical processes and experimental observations of high-pressure leaked gas penetrating the soil layer to form cavities; and computational fluid dynamics studies simulating leakage processes under various scenarios. Finally
the paper summarizes the current challenges in underground pipeline research and outlines future research directions regarding the expansion of experimental data conditions
numerical simulation methods
and underground pipeline scenarios.
余晓钟 , 孙炳清 , 辜穗 , 等 . “一带一路” 天然气高质量稳定合作影响因素与对策 [J ] . 世界石油工业 , 2025 , 32 ( 6 ): 1 - 10 .
Yu X Z , Sun B Q , Gu S , et al . Drivers and strategies of stable, high-quality natural gas cooperation under the Belt and Road Initiative [J ] . World Petroleum Industry , 2025 , 32 ( 6 ): 1 - 10 .
Davenport J , Wayth N . Statistical review of world energy [R ] . Energy institute , 2023 .
Bains P , Bennett S , Collina L , et al . Global hydrogen review 2023 [R ] . International Energy Agency : Paris, France , 2023 .
van Rossum R , Jens J , La Guardia G , et al . European Hydrogen Backbone: A European hydrogen infrastructure vision covering 28 countries [R ] . European Hydrogen Backbone Initiative , 2022 .
《中国天然气发展报告(2024)》预测: 今年天然气消费将首超4000亿方 [J ] . 化工管理 , 2024 ( 24 ): 60 .
China Petroleum and Chemical Industry Federation . China Natural Gas Development Report ( 2024 ) forecasts: natural gas consumption to exceed 400 billion cubic meters for the first time this year [J ] . Chemical Enterprise Management , 2024( 24 ): 60 .
才秀敏 . 《中国氢能源及燃料电池产业发展研究报告》发布 [J ] . 电器工业 , 2018 ( 12 ): 61 - 62 .
Cai X M . The research report on the development of hydrogen energy and fuel cell industry in China was released [J ] . China Electrical Equipment Industry , 2018 ( 12 ): 61 - 62 .
Wen J X , Marono M , Moretto P , et al . Statistics, lessons learned and recommendations from analysis of HIAD 2.0 database [J ] . International Journal of Hydrogen Energy , 2022 , 47 ( 38 ): 17082 - 17096 .
Kaiser S , Erxleben K , Rhode M , et al . Repair welding of in-service hydrogen pipelines - concepts and challenges - [C ] // 2024 15th International Pipeline Conference , September 23 – 27 , 2024 , Calgary, Alberta, Canada . 2024
Gallon N , Andrews R M , Huising O J C , et al . Hydrogen Pipelines:Design and Material Challenges and Mitigations [R ] . ERPG Project 221 / 2020 , 2020.
Sun Y H , Cheng Y F . Thermodynamics of spontaneous dissociation and dissociative adsorption of hydrogen molecules and hydrogen atom adsorption and absorption on steel under pipelining conditions [J ] . International Journal of Hydrogen Energy , 2021 , 46 ( 69 ): 34469 - 34486 .
Hoschke J , Roethig M , Tapia-Bastidas C V , et al . Determination of the hydrogen fugacity during cathodic hydrogen charging of X65 D pipeline steel [J ] . Corrosion Science , 2025 , 243 : 112580 .
Campari A , Konert F , Sobol O , et al . A comparison of vintage and modern X65 pipeline steel using hollow specimen technique for in-situ hydrogen testing [J ] . Engineering Failure Analysis , 2024 , 163 : 108530 .
Drexler A , Konert F , Sobol O , et al . Enhanced gaseous hydrogen solubility in ferritic and martensitic steels at low temperatures [J ] . International Journal of Hydrogen Energy , 2022 , 47 ( 93 ): 39639 - 39653 .
Jackson R B , Down A , Phillips N G , et al . Natural gas pipeline leaks across Washington, DC [J ] . Environmental Science & Technology , 2014 , 48 ( 3 ): 2051 - 2058 .
Najjar Y S H . Hydrogen safety: The road toward green technology [J ] . International Journal of Hydrogen Energy , 2013 , 38 ( 25 ): 10716 - 10728 .
Crowl D A , Jo Y D . The hazards and risks of hydrogen [J ] . Journal of Loss Prevention in the Process Industries , 2007 , 20 ( 2 ): 158 - 164 .
Calabrese M , Portarapillo M , Di Nardo A , et al . Hydrogen safety challenges: a comprehensive review on production, storage, transport, utilization, and CFD-based consequence and risk assessment [J ] . Energies , 2024 , 17 ( 6 ): 1350 .
孙逸林 , 郑小强 , 刘丹秀 , 等 . 我国城镇燃气管网生产安全事故统计与宏观规律分析 [J ] . 武汉理工大学学报(信息与管理工程版) , 2023 , 45 ( 5 ): 675 - 680, 703 .
Sun Y L , Zheng X Q , Liu D X , et al . Statistics and macrocosmic laws analysis of production safety accidents in china′s urban gas pipeline networks [J ] . Journal of Wuhan University of Technology (Information & Management Engineering) , 2023 , 45 ( 5 ): 675 - 680, 703 .
Zhang W K , Zhao G H . Leakage and diffusion characteristics of underground hydrogen pipeline [J ] . Petroleum , 2024 , 10 ( 2 ): 319 - 325 .
金友平 , 帅健 , 王文想 , 等 . 基于重大事故场景的受限空间内燃气泄漏情景模拟及泄爆优化研究 [J ] . 高压物理学报 , 2023 , 37 ( 6 ): 161 - 177 .
Jin Y P , Shuai J , Wang W X , et al . Leakage characteristics of flammable gas in confined space and the optimum design of explosion venting: numerical simulation on basis of the major accident [J ] . Chinese Journal of High Pressure Physics , 2023 , 37 ( 6 ): 161 - 177 .
National Transportation Safety Board . Natural Gas-Fueled Building Explosion and Resulting Fire [R ] . Washington, D. C. : National Transportation Safety Board , 2015 .
van den Brand D , Kutrowski K H . Safety in European gas transmission pipelines EGIG: European gas pipeline incident data group [C ] // Proceedings of the 23rd World Gas Conference . Amsterdam, The Netherlands . 2006 : 5 - 9 .
Woodward J L , Mudan K S . Liquid and gas discharge rates through holes in process vessels [J ] . Journal of Loss Prevention in the Process Industries , 1991 , 4 ( 3 ): 161 - 165 .
冯云飞 , 吴明 , 闫明龙 , 等 . 燃气管道泄漏模型的研究进展 [J ] . 当代化工 , 2011 , 40 ( 12 ): 1255 - 1257, 1260 .
Feng Y F , Wu M , Yan M L , et al . Research progress in leakage models for gas pipelines [J ] . Contemporary Chemical Industry , 2011 , 40 ( 12 ): 1255 - 1257, 1260 .
Levenspiel O . Engineering Flow and Heat Exchange [M ] . Boston, MA : Springer US , 2014 .
Montiel H , Vı́lchez J A , Casal J , et al . Mathematical modelling of accidental gas releases [J ] . Journal of Hazardous Materials , 1998 , 59 ( 2/3 ): 211 - 233 .
Crowl D A , Louvar J F . Chemical Process Safety: Fundamentals with Applications [M ] . Upper Saddle River : Pearson Education , 2001 .
Dong Y H , Gao H L , Zhou J E , et al . Evaluation of gas release rate through holes in pipelines [J ] . Journal of Loss Prevention in the Process Industries , 2002 , 15 ( 6 ): 423 - 428 .
熊兆洪 , 李振林 , 宫敬 , 等 . 埋地管道小泄漏模型及数值求解 [J ] . 石油学报 , 2012 , 33 ( 3 ): 493 - 498 .
Xiong Z H , Li Z L , Gong J , et al . A model for underground pipeline small leakage and its numerical solution [J ] . Acta Petrolei Sinica , 2012 , 33 ( 3 ): 493 - 498 .
Nouri-Borujerdi A , Ziaei-Rad M . Simulation of compressible flow in high pressure buried gas pipelines [J ] . International Journal of Heat and Mass Transfer , 2009 , 52 ( 25/26 ): 5751 - 5758 .
Jo Y D , Ahn B J . A simple model for the release rate of hazardous gas from a hole on high-pressure pipelines [J ] . Journal of Hazardous Materials , 2003 , 97 ( 1/2/3 ): 31 - 46 .
王大庆 , 张鹏 . 压力容器气体非稳态泄漏模型研究 [J ] . 中国安全科学学报 , 2012 , 22 ( 7 ): 154 - 158 .
Wang D Q , Zhang P . Non-steady-state gas leakage model for pressure vessel failure [J ] . China Safety Science Journal , 2012 , 22 ( 7 ): 154 - 158 .
Moloudi R , Abolfazli Esfahani J . Modeling of gas release following pipeline rupture: Proposing non-dimensional correlation [J ] . Journal of Loss Prevention in the Process Industries , 2014 , 32 : 207 - 217 .
彭伟 , 张俊 , 袁宏永 , 等 . 深埋管道中泄漏孔对燃气泄漏影响的数值模拟 [J ] . 中国安全生产科学技术 , 2020 , 16 ( 10 ): 59 - 64 .
Peng W , Zhang J , Yuan H Y , et al . Numerical simulation on influence of leakage hole on gas leakage in deep buried pipeline [J ] . Journal of Safety Science and Technology , 2020 , 16 ( 10 ): 59 - 64 .
Bu F X , Chen S Q , Liu Y , et al . CFD analysis and calculation models establishment of leakage of natural gas pipeline considering real buried environment [J ] . Energy Reports , 2022 , 8 : 3789 - 3808 .
Bezaatpour J , Fatehifar E , Rasoulzadeh A . CFD investigation of natural gas leakage and propagation from buried pipeline for anisotropic and partially saturated multilayer soil [J ] . Journal of Cleaner Production , 2020 , 277 : 123940 .
刘畅 . 天然气埋地管道在非均质土壤中的泄漏扩散模拟研究 [D ] . 荆州 : 长江大学 , 2021 .
Liu C . Simulation study on leakage and diffusion of natural gas buried pipeline in heterogeneous soil [D ] . Jingzhou : Yangtze University , 2021 .
Bu F X , Lu Q X , Liu R Q , et al . Numerical simulation study on leakage and diffusion of medium and low pressure buried gas pipelines considering soil cavitation effect [J ] . Journal of Pipeline Science and Engineering , 2026 , 6 ( 2 ): 100364 .
Bagheri M , Sari A . Study of natural gas emission from a hole on underground pipelines using optimal design-based CFD simulations: Developing comprehensive soil classified leakage models [J ] . Journal of Natural Gas Science and Engineering , 2022 , 102 : 104583 .
Xia Z H , Xu Z D , Lu H F , et al . Leakage analysis and prediction model of underground high-pressure natural gas pipeline considering box culvert protection [J ] . Process Safety and Environmental Protection , 2023 , 180 : 837 - 855 .
Lu H C , Guo B L , Chen X H , et al . Numerical investigation on leakage and diffusion characteristics of buried hydrogen-blended natural gas pipelines [J ] . International Journal of Hydrogen Energy , 2024 , 59 : 1491 - 1506 .
Zhang Y K , Yang Y L , Wu F R , et al . Numerical investigation on pinhole leakage and diffusion characteristics of medium-pressure buried hydrogen pipeline [J ] . International Journal of Hydrogen Energy , 2024 , 51 : 807 - 817 .
Wang Y J , Sun B C , Zhang L B , et al . Study on the hydrogen leakage and diffusion behavior of long-distance high-pressure buried pure-hydrogen pipelines [J ] . International Journal of Hydrogen Energy , 2025 , 141 : 212 - 228 .
官学源 . 埋地天然气管道持续泄漏数值模拟 [J ] . 当代化工 , 2015 , 44 ( 8 ): 1974 - 1976 .
Guan X Y . Numerical simulation on continuous leakage of buried natural gas pipelines [J ] . Contemporary Chemical Industry , 2015 , 44 ( 8 ): 1974 - 1976 .
叶岩 , 王岳 . 大气土壤耦合的埋地燃气管道泄漏扩散数值分析 [J ] . 中国安全生产科学技术 , 2018 , 14 ( 4 ): 107 - 113 .
Ye Y , Wang Y . Numerical analysis on leakage and diffusion of buried gas pipeline based on atmosphere-soil coupling [J ] . Journal of Safety Science and Technology , 2018 , 14 ( 4 ): 107 - 113 .
叶岩 , 王岳 . 土壤大气耦合埋地管道泄漏扩散的数值分析 [J ] . 辽宁石油化工大学学报 , 2019 , 39 ( 2 ): 63 - 69 .
Ye Y , Wang Y . Numerical simulation of leakage and diffusion of buried pipelines based on soil atmosphere coupling [J ] . Journal of Liaoning Shihua University , 2019 , 39 ( 2 ): 63 - 69 .
Ebrahimi-Moghadam A , Farzaneh-Gord M , Deymi-Dashtebayaz M . Correlations for estimating natural gas leakage from above-ground and buried urban distribution pipelines [J ] . Journal of Natural Gas Science and Engineering , 2016 , 34 : 185 - 196 .
Liu C , Yang M H , Hou Y T , et al . Spatiotemporal evolution of island ecological quality under different urban densities: a comparative analysis of Xiamen and Kinmen Islands, southeast China [J ] . Ecological Indicators , 2021 , 124 : 107438 .
马梅 , 蒋仲安 . 隧道内埋地燃气管道泄漏扩散规律研究 [J ] . 石油与天然气化工 , 2022 , 51 ( 1 ): 132 - 137 .
Ma M , Jiang Z A . Study on leakage and diffusion law of buried gas pipeline in tunnel [J ] . Chem. Eng. Gas , 2022 , 51 : 132 - 137 .
Zandi E , Alemrajabi A A , Emami M D , et al . Numerical study of gas leakage from a pipeline and its concentration evaluation based on modern and practical leak detection methods [J ] . Journal of Loss Prevention in the Process Industries , 2022 , 80 : 104890 .
Zhang W K , Zhao G H . Leakage and diffusion characteristics of underground hydrogen pipeline [J ] . Petroleum , 2024 , 10 ( 2 ): 319 - 325 .
潘军 . 掺氢天然气埋地管道泄漏扩散行为研究 [D ] . 东营 : 中国石油大学(华东) , 2022 .
Pan J . Study on leakage and diffusion behavior of hydrogen-doped natural gas buried pipeline [D ] . Dongying : China University of Petroleum (Huadong) , 2022 .
Okamoto H , Gomi Y . Empirical research study on diffusion behavior of gas leaks in the ground: Verification by full-scale experiment [J ] . Safety Engineering , 2009 , 48 ( 5 ): 306 - 312 .
Okamoto H , Gomi Y . Empirical research study on diffusion behavior of gas leaks in the ground: The numerical simulation model's applicability verification [J ] . Safety Engineering , 2010 , 49 ( 1 ): 38 - 46 .
Okamoto H , Gomi Y . Empirical research on diffusion behavior of leaked gas in the ground [J ] . Journal of Loss Prevention in the Process Industries , 2011 , 24 ( 5 ): 531 - 540 .
Okamoto H , Gomi Y , Akagi H . Movement characteristics of hydrogen gas within the ground and its detection at ground surface [J ] . Journal of Civil Engineering and Science , 2014 , 3 ( 1 ): 49 - 66 .
Houssin-Agbomson D , Blanchetière G , McCollum D , et al . Consequences of a 12-mm diameter high pressure gas release on a buried pipeline. Experimental setup and results [J ] . Journal of Loss Prevention in the Process Industries , 2018 , 54 : 183 - 189 .
Bonnaud C , Cluzel V , Corcoles P , et al . Experimental study and modelling of the consequences of small leaks on buried transmission gas pipeline [J ] . Journal of Loss Prevention in the Process Industries , 2018 , 55 : 303 - 312 .
Zhu J L , Pan J , Zhang Y X , et al . Leakage and diffusion behavior of a buried pipeline of hydrogen-blended natural gas [J ] . International Journal of Hydrogen Energy , 2023 , 48 ( 30 ): 11592 - 11610 .
Zhu J L , Wang S L , Pan J , et al . Experimental study on leakage temperature field of hydrogen blending into natural gas buried pipeline [J ] . Applied Energy , 2024 , 359 : 122656 .
晏玉婷 . 管道泄漏后天然气在土壤中扩散过程的研究 [D ] . 北京 : 清华大学 , 2017 .
Yan Y T . Natural gas transport in soil for gas pipeline leakage [D ] . Beijing : Tsinghua University , 2017 .
Wang X M , Hou T L , Gao W X , et al . Experimental study on the diffusion process of natural gas from buried pipelines to underground confined spaces [J ] . Natural Gas Industry B , 2024 , 11 ( 5 ): 603 - 615 .
Liu C W , Liao Y H , Liang J , et al . Quantifying methane release and dispersion estimations for buried natural gas pipeline leakages [J ] . Process Safety and Environmental Protection , 2021 , 146 : 552 - 563 .
0
浏览量
11
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010102001995号