NUMERICAL MODELING OF HYDROGEN STORAGE SYSTEMS USING COMSOL MULTIPHYSICS

NUMERICAL MODELING OF HYDROGEN STORAGE SYSTEMS USING COMSOL MULTIPHYSICS

Authors

  • Omonov Baxtiyor Muxidin o’g’li Email: Bakhtiyor.omonov@gmail.com https://orcid.org/0009-0005-2251-4242 Institute of Materials Science, Academy of Sciences of the Republic of Uzbekistan, Tashkent, 100095 Uzbekistan Turin Polytechnic University in Tashkent, Little Ring Road 17, Almazar distrct, 100095, Tashkent city, Uzbekistan

Keywords:

• Hydrogen storage systems • Numerical modeling • COMSOL Multiphysics • Heat transfer • Mass transfer • Metal hydride reactors • Underground hydrogen storage • Thermal management • Hydrogen absorption and desorption • Multiphysics simulation • Energy storage technology • Hydrogen compression • Proton exchange membrane systems • Geomechanical analysis • Sustainable energy systems

Abstract

The development of efficient hydrogen storage systems is pivotal for advancing alternative energy sources and tackling pressing environmental issues. As hydrogen emerges as a leading candidate for clean energy solutions, the role of precise numerical modeling in understanding the dynamics of these storage systems becomes increasingly critical.

References

• Wencan Ma, Yunni Zhan, Tangsong Zhu, Haomin Wu, Xinxin Huang, Teng Long, Teng Wang, et al. (2025). Supramolecular Solvent‐mediated Polymeric Gel with High Adhesion and Toughness for Adaptive Grasping Soft Robotics. Volume(35). Advanced Functional Materials. https://doi.org/10.1002/adfm.202506143

• Xiyao Liu, Yanpeng Mao (2025). Advanced NiCr/NiSi Thin-Film Thermocouples for Precise Temperature Sensing in Lithium-Ion Battery Systems. Volume(25), 3438-3438. Sensors. https://doi.org/10.3390/s25113438

• Rui Xue, Jinping Wang, Jiale Chen, Shunai Che (2025). Multiphysics Modeling and Performance Optimization of CO2/H2O Co-Electrolysis in Solid Oxide Electrolysis Cells: Temperature, Voltage, and Flow Configuration Effects. Volume(18), 3941-3941. Energies. https://doi.org/10.3390/en18153941

• Abdulhammed K. Hamzat, Md Shafinur Murad, Ibrahim A. Adediran, Eylem Asmatulu, Ramazan Asmatulu (2025). Fiber-reinforced composites for aerospace, energy, and marine applications: an insight into failure mechanisms under chemical, thermal, oxidative, and mechanical load conditions. Volume(8). Advanced Composites and Hybrid Materials. https://doi.org/10.1007/s42114-024-01192-y

• Yanfang Yang, Yuqin Xiao, Qingxin Zhang, Yuxin Yan, Tao Wu, Cheng Heng Pang (2025). Graphene‐Inspired Mono‐Elemental 2D Materials: Synthesis, Properties, and Potential Applications of Xenes. Volume(12), e09262-e09262. Advanced Science. https://doi.org/10.1002/advs.202509262

• Najmehsadat Valedsaravi, Gamadi Talal (2025). Geomechanical and Geochemical Considerations for Hydrogen Storage in Shale and Tight Reservoirs. Preprints.org. https://doi.org/10.20944/preprints202506.1530.v1

• Jianuo Chen, Xuekun Lu, Lingtao Wang, Wenjia Du, Hengyi Guo, Max Rimmer, Heng Zhai, et al. (2024). Laser scribed proton exchange membranes for enhanced fuel cell performance and stability. Volume(15), 10811-10811. Nature Communications. https://doi.org/10.1038/s41467-024-55070-8

• Gintaras Stankevičius, Kamilis Jonkus, Mayur Pal (2025). Advancing Darcy Flow Modeling: Comparing Numerical and Deep Learning Techniques. Volume(13), 2754-2754. Processes. https://doi.org/10.3390/pr13092754

• Ginu R. George, Adam Yonge, Meagan Crowley, Anh T. To, Peter N. Ciesielski, Canan Karakaya (2025). Multiscale characterization, modeling and simulation of packed bed reactor for direct conversion of syngas to dimethyl ether. Volume(3), 856-874. RSC Sustainability. https://doi.org/10.1039/d4su00602j

• Marina Koņuhova, Valērijs Bezrukovs, Vladislavs Bezrukovs, Deniss Bezrukovs, M. Buryi, Nikita Gorbunovs, Anatoli I. Popov (2025). Numerical Simulations of Scaling of the Chamber Dimensions of the Liquid Piston Compressor for Hydrogen Applications. Volume(13), 226-226. Technologies. https://doi.org/10.3390/technologies13060226

• Jingyu Huang, Shunde Yin (2025). Optimization of the Design of Underground Hydrogen Storage in Salt Caverns in Southern Ontario, Canada. Volume(5), 9-9. Mining. https://doi.org/10.3390/mining5010009

• A.R. Bayat, Prodip K. Das, Goutam Saha, Suvash C. Saha (2025). Optimizing proton exchange membrane electrolyzer cells: A comprehensive parametric analysis of flow, electrochemical, and geometrical factors. Volume(27), 101177-101177. International Journal of Thermofluids. https://doi.org/10.1016/j.ijft.2025.101177

• Jeongsu Pyeon, Hyeon-Seung Lee, Wonho Choe, Sanghoo Park, Hyoungsoo Kim (2025). Versatile Liquid Metal Composite Inks for Printable, Durable, and Ultra‐Stretchable Electronics. Volume(21), e2501829-e2501829. Small. https://doi.org/10.1002/smll.202501829

• Davide Clerici, Francesca Pistorio, Salvatore Scalzo, Salvatore Martelli, Francesco Mocera, Aurelio Somà (2025). Mechanical Multiscale Lithium-Ion Battery Modeling for Optimized Battery Pack Design. https://doi.org/10.3390/engproc2025085048

IMAGE REFERENCES;

• Schematic of a Gas Sampling and Monitoring System [Image]. (2026). Retrieved fromhttps://media.springernature.com/m685/springer-static/image/art%3A10.1038%2Fs41598-024-76966-x/MediaObjects/41598_2024_76966_Fig1_HTML.png

• 3D Visualization of Cylindrical Structures in Fluid Dynamics [Image]. (2026). Retrieved from https://www.comsol.com/paper/image/134572/big.png

• Research on Performance Testing of Metal Hydride Hydrogen Storage Systems [Image]. (2026). Retrieved from https://0.academia-photos.com/attachment_thumbnails/78545714/mini_magick20220112-20877-j9o09y.png?1641994873

Downloads

Published

2026-02-01
Loading...