{"editor":[{"last_name":"Benin","first_name":"Ali Cemal","full_name":"Benin, Ali Cemal"},{"last_name":"Bennacer","first_name":"Rachid ","full_name":"Bennacer, Rachid "},{"full_name":"Mohamad, Abdulmajeed A. ","first_name":"Abdulmajeed A. ","last_name":"Mohamad"},{"full_name":"Ocłoń, Paweł ","last_name":"Ocłoń","first_name":"Paweł "},{"last_name":"Suh","first_name":"Sang-Ho ","full_name":"Suh, Sang-Ho "},{"full_name":"Taler, Jan ","first_name":"Jan ","last_name":"Taler"}],"title":"Charging and Discharging of Hydrogen Sorption Tanks","language":[{"iso":"eng"}],"date_updated":"2024-09-30T06:51:54Z","date_created":"2024-09-24T09:16:51Z","status":"public","citation":{"havard":"G.H. Klepp, M. Filippi, G. Langer, Charging and Discharging of Hydrogen Sorption Tanks, Springer, 2024.","ufg":"Klepp, Georg Heinrich/Filippi, Markus/Langer, Guido: Charging and Discharging of Hydrogen Sorption Tanks, hg. von Benin, Ali Cemal u. a., o. O. 2024 (Lecture Notes in Mechanical Engineering ((LNME))).","apa":"Klepp, G. H., Filippi, M., & Langer, G. (2024). Charging and Discharging of Hydrogen Sorption Tanks. In A. C. Benin, R. Bennacer, A. A. Mohamad, P. Ocłoń, S.-H. Suh, & J. Taler (Eds.),   Advances in Computational Heat and Mass Transfer : Proceedings of the 14th International Conference on Computational Heat and Mass Transfer (ICCHMT 2023), 4-8 September, 2023, Düsseldorf, Germany, Volume 1 (pp. 480–488). Springer. https://doi.org/10.1007/978-3-031-67241-5_43","bjps":"Klepp GH, Filippi M and Langer G (2024) Charging and Discharging of Hydrogen Sorption Tanks, Benin AC et al. (eds). Springer.","short":"G.H. Klepp, M. Filippi, G. Langer, Charging and Discharging of Hydrogen Sorption Tanks, Springer, 2024.","chicago":"Klepp, Georg Heinrich, Markus Filippi, and Guido Langer. Charging and Discharging of Hydrogen Sorption Tanks. Edited by Ali Cemal Benin, Rachid Bennacer, Abdulmajeed A. Mohamad, Paweł Ocłoń, Sang-Ho Suh, and Jan Taler.   Advances in Computational Heat and Mass Transfer : Proceedings of the 14th International Conference on Computational Heat and Mass Transfer (ICCHMT 2023), 4-8 September, 2023, Düsseldorf, Germany, Volume 1 . Lecture Notes in Mechanical Engineering ((LNME)). Springer, 2024. https://doi.org/10.1007/978-3-031-67241-5_43.","mla":"Klepp, Georg Heinrich, et al. “Charging and Discharging of Hydrogen Sorption Tanks.”   Advances in Computational Heat and Mass Transfer : Proceedings of the 14th International Conference on Computational Heat and Mass Transfer (ICCHMT 2023), 4-8 September, 2023, Düsseldorf, Germany, Volume 1 , edited by Ali Cemal Benin et al., Springer, 2024, pp. 480–88, https://doi.org/10.1007/978-3-031-67241-5_43.","ieee":"G. H. Klepp, M. Filippi, and G. Langer, Charging and Discharging of Hydrogen Sorption Tanks. Springer, 2024, pp. 480–488. doi: 10.1007/978-3-031-67241-5_43.","din1505-2-1":"Klepp, Georg Heinrich ; Filippi, Markus ; Langer, Guido ; Benin, A. C. ; Bennacer, R. ; Mohamad, A. A. ; Ocłoń, P. ; Suh, S.-H. ; Taler, J. (Hrsg.): Charging and Discharging of Hydrogen Sorption Tanks, Lecture Notes in Mechanical Engineering ((LNME)) : Springer, 2024","ama":"Klepp GH, Filippi M, Langer G. Charging and Discharging of Hydrogen Sorption Tanks. (Benin AC, Bennacer R, Mohamad AA, Ocłoń P, Suh SH, Taler J, eds.). Springer; 2024:480-488. doi:10.1007/978-3-031-67241-5_43","van":"Klepp GH, Filippi M, Langer G. Charging and Discharging of Hydrogen Sorption Tanks. Benin AC, Bennacer R, Mohamad AA, Ocłoń P, Suh SH, Taler J, editors.   Advances in Computational Heat and Mass Transfer : Proceedings of the 14th International Conference on Computational Heat and Mass Transfer (ICCHMT 2023), 4-8 September, 2023, Düsseldorf, Germany, Volume 1 . Springer; 2024. (Lecture Notes in Mechanical Engineering ((LNME))).","chicago-de":"Klepp, Georg Heinrich, Markus Filippi und Guido Langer. 2024. Charging and Discharging of Hydrogen Sorption Tanks. Hg. von Ali Cemal Benin, Rachid Bennacer, Abdulmajeed A. Mohamad, Paweł Ocłoń, Sang-Ho Suh, und Jan Taler.   Advances in Computational Heat and Mass Transfer : Proceedings of the 14th International Conference on Computational Heat and Mass Transfer (ICCHMT 2023), 4-8 September, 2023, Düsseldorf, Germany, Volume 1 . Lecture Notes in Mechanical Engineering ((LNME)). Springer. doi:10.1007/978-3-031-67241-5_43, ."},"type":"conference_editor_article","publication_status":"published","quality_controlled":"1","conference":{"name":"14th International Conference on Computational Heat and Mass Transfer (ICCHMT 2023)","location":"Düsseldorf","start_date":"2023-09-04","end_date":"2023-09-08"},"year":"2024","_id":"11934","user_id":"83781","author":[{"first_name":"Georg Heinrich","last_name":"Klepp","full_name":"Klepp, Georg Heinrich","id":"49011"},{"id":"61656","full_name":"Filippi, Markus","last_name":"Filippi","first_name":"Markus"},{"first_name":"Guido","last_name":"Langer","full_name":"Langer, Guido","id":"71642"}],"department":[{"_id":"DEP6020"},{"_id":"DEP6017"}],"publisher":"Springer","doi":"10.1007/978-3-031-67241-5_43","page":"480 - 488","abstract":[{"text":"The application of hydrogen in order to store energy and as a vehicle fuel requires efficient and effective storage technologies. An alternative solution to cryogenic and high pressure tanks is the use of porous material and physisorption (carbons, metal organic frameworks) or chemisorption (hydrides) in the tank. Due to the heat of sorption the temperature and its distribution in the tank might vary significantly during charging and discharging, affecting the storage capacity. The flow of the hydrogen in the tank is described by the equation of mass conservation, the Navier-Stokes equations and the equation of energy conservation as implemented in a CFD code. In the conservation equation additional terms are implemented in order to account for the amount of hydrogen involved in the sorption and the corresponding heat of sorption. These result from the mass and energy balance for the hydrogen in a finite volume whereat the equilibrium is described by an appropriate sorption isotherm. The use of data driven models is often computationally more advantageous then physical models. Based on the physical adsorption model a data driven model is derived using different machine learning techniques. This model is implemented as source terms in the governing equations, leading to a computationally more advantageous formulation. Thus the distribution of temperature and concentration during charging and discharging of the tanks is computed and limiting phenomena are identified.","lang":"eng"}],"publication_identifier":{"unknown":["978-3-031-67240-8"],"eisbn":["978-3-031-67241-5"]},"publication":"\t Advances in Computational Heat and Mass Transfer : Proceedings of the 14th International Conference on Computational Heat and Mass Transfer (ICCHMT 2023), 4-8 September, 2023, Düsseldorf, Germany, Volume 1 ","series_title":"Lecture Notes in Mechanical Engineering ((LNME))"}