Company Filing History:
Years Active: 2024
Title: Yanli Fang: Innovator in Underground Salt Cavern Hydrogen Storage
Introduction
Yanli Fang is a prominent inventor based in Sichuan, China. He has made significant contributions to the field of underground energy storage, particularly through his innovative approaches to hydrogen storage solutions. His work focuses on enhancing the efficiency and safety of energy storage systems.
Latest Patents
Yanli Fang holds a patent for a "Coupling numerical simulation method for site selection of underground salt cavern hydrogen storage." This patent relates to the field of underground salt cavern energy storage. The method involves obtaining geological data of the area designated for the salt cavern hydrogen storage. A three-dimensional model is established, followed by grid meshing. An initial coupling field is created and balanced based on the geological model, leading to the excavation simulation of the salt cavern. The geological model post-excavation and its related parameter values are imported into TOUGH2MP software. A stress model in FLAC3D software is coupled with hydraulic and thermal models in TOUGH2MP to simulate the stress, hydraulic, and thermal coupling behavior of rock layers surrounding the salt cavern. This comprehensive approach results in a coupled simulation outcome.
Career Highlights
Throughout his career, Yanli Fang has worked at notable institutions, including Sichuan University and Zhengzhou University. His experience in these academic environments has allowed him to develop and refine his innovative methods in energy storage.
Collaborations
Yanli Fang has collaborated with esteemed colleagues, including Zhengmeng Hou and Jianhua Liu. Their joint efforts have contributed to advancements in the field of underground energy storage.
Conclusion
Yanli Fang's innovative work in underground salt cavern hydrogen storage exemplifies the potential for advancements in energy solutions. His contributions are paving the way for more efficient and sustainable energy storage methods.