Numerical analysis of hydrogen storage in lined rock cavern under high pressure and its implications to hydrogen embrittlement

被引:1
|
作者
Sun, Zhuang [1 ]
Wu, Jingtian [1 ]
Fager, Andrew [1 ]
Crouse, Bernd [1 ]
机构
[1] Dassault Syst, 343 Sansome St, San Francisco, CA 94104 USA
关键词
Underground hydrogen storage; Rock cavern stability; Steel linear; Finite element method; Hydrogen diffusion; AIR ENERGY-STORAGE; STAINLESS;
D O I
10.1016/j.ijhydene.2024.07.208
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Underground hydrogen storage could provide buffer capacity to store the excess energy from renewable resources. A lined rock cavern (LRC) is one of the hydrogen geologic storage site options. It offers great flexibility because it does not rely on the existence of salt caverns, aquifer formations or depleted hydrocarbon reservoir fields. However, many important aspects have to be investigated before its full-scale implementation, among them (1) the effect of spatial variation of rock mass properties and (2) hydrogen embrittlement on the steel lining. We present a numerical study on these two aspects by simulating field tests at a pilot LRC project. For the effect of rock heterogeneity, we assign a spatial variation of elastic properties based on the Gaussian covariance model. The results show a good agreement with the field measurements. The spatial correlation length of rock mass elastic properties only has a minor impact on the cavern surface deformation. Regarding hydrogen embrittlement, our simulations predict a significant hydrogen diffusion in the low alloy steel (S355) lining after similar to 2 months of operation. The fracture simulations show little fracture propagation even after 10 years of contact with hydrogen gas. However, the product loss may be too high for the low alloy steel (S355). We would recommend the use of stainless steel to inhibit the hydrogen diffusion. We show that advanced numerical models are powerful tools to ensure the safety of hydrogen storage in LRCs.
引用
收藏
页码:1021 / 1029
页数:9
相关论文
共 50 条
  • [21] A Novel Polymerized Sulfur Concrete for Underground Hydrogen Storage in Lined Rock Caverns
    Mohamed, Abdel-Mohsen O.
    El Gamal, Maisa
    SUSTAINABILITY, 2024, 16 (19)
  • [22] A review of hydrogen/rock/brine interaction: Implications for Hydrogen Geo-storage
    Aslannezhad, Masoud
    Ali, Muhammad
    Kalantariasl, Azim
    Sayyafzadeh, Mohammad
    You, Zhenjiang
    Iglauer, Stefan
    Keshavarz, Alireza
    PROGRESS IN ENERGY AND COMBUSTION SCIENCE, 2023, 95
  • [23] NUMERICAL ANALYSIS OF HYDROGEN DISTRIBUTION IN WELDS OF STAINLESS CLAD STEELS FOR HYDROGEN STORAGE PRESSURE VESSELS
    Mori, Hiroaki
    Kayano, Rinzo
    Ogiwara, Hiroyuki
    Saida, Kazuyoshi
    Nishimoto, Kazutoshi
    PROCEEDINGS OF THE ASME PRESSURE VESSELS AND PIPING CONFERENCE - 2013, VOL 6B: MATERIALS AND FABRICATION, 2014,
  • [24] Challenges associated with hydrogen storage systems due to the hydrogen embrittlement of high strength steels
    Meda, Ujwal Shreenag
    Bhat, Nidhi
    Pandey, Aditi
    Subramanya, K. N.
    Raj, M. A. Lourdu Antony
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2023, 48 (47) : 17894 - 17913
  • [25] High temperature electrochemical charging of hydrogen and its application in hydrogen embrittlement research
    Au, Ming
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2007, 454 (564-569): : 564 - 569
  • [26] Hydrogen Absorption Reactions of Hydrogen Storage Alloy LaNi5 under High Pressure
    Sato, Toyoto
    Saitoh, Hiroyuki
    Utsumi, Reina
    Ito, Junya
    Nakahira, Yuki
    Obana, Kazuki
    Takagi, Shigeyuki
    Orimo, Shin-ichi
    MOLECULES, 2023, 28 (03):
  • [27] A Study of Hydrogen Embrittlement of SA-372 J Class High Pressure Hydrogen Storage Seamless Cylinder (≥100 MPA)
    Yin, Ruifeng
    Fu, Ruidong
    Gu, Ningning
    Liu, Yongjiu
    MATERIALS, 2022, 15 (21)
  • [28] In-situ diffraction techniques for studying hydrogen storage materials under high hydrogen pressure
    Gray, E. MacA
    Webb, C. J.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2012, 37 (13) : 10182 - 10195
  • [29] Hydrogen Embrittlement Sensitivity of X70 Welded Pipe Under a High-Pressure Pure Hydrogen Environment
    Shuai, Kangxin
    Liu, Haixiao
    Li, Ming
    Yin, Shubiao
    Li, Ba
    Wang, Bing
    Liu, Qingyou
    Jia, Shujun
    MATERIALS, 2024, 17 (23)
  • [30] Modelling green hydrogen storage in salt caverns: Implications of future storage demands on cavern operation
    Hoepken, Lars
    Bekebrok, Heinz
    Pluta, Adam
    Langnickel, Hendrik
    Savchenko, Ievgeniia
    Ohm, Marco
    Steinmann, Oscar
    Zobel, Marco
    Dyck, Alexander
    Agert, Carsten
    JOURNAL OF ENERGY STORAGE, 2025, 119