Numerical Modeling of Accidental Release of Liquid Hydrogen

被引:0
|
作者
Liang, Y. [1 ,2 ]
Liu, L. [2 ]
Peng, N. [2 ]
Ghidaglia, J. M. [1 ,3 ]
Qu, Y. [1 ]
机构
[1] Univ Paris Saclay, Ctr Borelli, 4 Ave Sci, F-91190 Gif Sur Yvette, France
[2] Univ Chinese Acad Sci, 1 Yanqihu East Rd, Beijing 101408, Peoples R China
[3] UM6P Benguerir, Coll Comp, Benguerir, Morocco
关键词
CFD; OpenFOAM; Liquid hydrogen; Multi-phase; Phase change; SPILLS; DISPERSION;
D O I
10.1007/978-3-031-66609-4_64
中图分类号
O414.1 [热力学];
学科分类号
摘要
Liquid hydrogen (LH2), generated from renewable energy sources, is now a significant business to industries around the world. Control of the hazards is the key ingredient for ensuring the safety of hydrogen systems and thus becomes the main content of the safety requirements for storage and transportation of LH2 standards. This paper presents our ongoing work of developing a new methodology for 3D multiphase study in thermal and thermodynamics by using an open-source CFD code, OpenFOAM. In order to validate this model, simulations are evaluated with the comparison with the NASA LH2 experimental data set [4]. LH2 flows downward from the release point. After the heating of the air and the ground, part of the LH2 evaporates rapidly, and part of it forms an LH2 pool on the ground. The early stage is the diffusion of heavy gas, and then it becomes a buoyant mixed gas, which moves downwind and upward under the action of wind and buoyancy. Currently, we use the solver in OpenFOAM. The detailed settings, including boundary conditions, geometry, etc., are explained in detail. The simulation and experiment are compared in detail, and the most critical is the comparison with NASA's sixth experiment at the hydrogen concentration at 20.94 s. Through various comparisons, the validity of the simulation has been verified. Overall, the comparison of the hydrogen concentration profiles in experiments and simulations shows good agreement. Finally, the initial process of LH2 leakage is analyzed based on simulations.
引用
收藏
页码:694 / 703
页数:10
相关论文
共 50 条
  • [31] Aromatic liquid organic hydrogen carriers for hydrogen storage and release
    Modisha, Phillimon
    Bessarabov, Dmitri
    CURRENT OPINION IN GREEN AND SUSTAINABLE CHEMISTRY, 2023, 42
  • [32] Numerical simulation of toxic chemical transport after accidental release at chemical plant
    Biliaiev, Mykola
    Biliaieva, Viktoriia
    Kozachyna, Vitalii
    Berlov, Oleksandr
    Kalashnikov, Ivan
    ROMANIAN JOURNAL OF INFORMATION SCIENCE AND TECHNOLOGY, 2020, 23 : S3 - S13
  • [33] Accidental release of retrovirus
    Ursula Hofer
    Nature Reviews Microbiology, 2013, 11 : 660 - 660
  • [34] ACCIDENTAL RELEASE OF RETROVIRUS
    不详
    NATURE REVIEWS MICROBIOLOGY, 2013, 11 (10) : 660 - 660
  • [35] Numerical Evaluation of Harmful Consequences after Accidental Explosion at a Hydrogen Filling Station
    Skob, Yurii
    Yakovlev, Sergiy
    Pichugina, Oksana
    Kalinichenko, Mykola
    Kartashov, Oleksii
    ENVIRONMENTAL AND CLIMATE TECHNOLOGIES, 2024, 28 (01) : 181 - 194
  • [36] ACCIDENTAL DEGENERACY OF HYDROGEN
    JACKSON, TAS
    PROCEEDINGS OF THE PHYSICAL SOCIETY OF LONDON SECTION A, 1953, 66 (406): : 958 - 959
  • [37] Autothermal hydrogen release from liquid organic hydrogen carrier systems
    Siegert, Fabian
    Gundermann, Michael
    Maurer, Lukas
    Hahn, Simon
    Hofmann, Jonas
    Distel, Max
    Schuehle, Johannes
    Mueller, Karsten
    Wolf, Moritz
    Preuster, Patrick
    Auer, Franziska
    Geisselbrecht, Michael
    Wasserscheid, Peter
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2024, 91 : 834 - 842
  • [38] Numerical investigation of cavitating flow in liquid hydrogen
    Huang, Biao
    Wu, Qin
    Wang, Guoyu
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2014, 39 (04) : 1698 - 1709
  • [39] Numerical Simulation of Thermal Stratification in Liquid Hydrogen
    Tanyun, Z.
    Zhongping, H.
    Li, S.
    Advances in Cryogenic Engineering, (41/A):
  • [40] Numerical simulation of thermal stratification in liquid hydrogen
    Tanyun, Z
    Zhongping, H
    Li, SM
    ADVANCES IN CRYOGENIC ENGINEERING, VOL 41, PTS A AND B, 1996, : 155 - 161