Potencial de oferta do hidrogênio como vetor energético no Brasil com base na análise da técnica de dinâmica de sistemas
dc.creator | Chiquete, Hilquias Silva Epalanga | |
dc.creator | Goulart, Diego Dorneles | |
dc.creator | Parqui, Wilson Omar Ramos | |
dc.creator | Sperandio, Mauricio | |
dc.date.accessioned | 2023-11-21T13:06:06Z | |
dc.date.available | 2023-11-21T13:06:06Z | |
dc.date.submitted | 2023 | |
dc.identifier.uri | http://repositorio.ufsm.br/handle/1/30581 | |
dc.language | por | por |
dc.relation.ispartof | 15TH SEMINAR ON POWER ELECTRONICS AND CONTROL (SEPOC 2023) | por |
dc.rights | Acesso Aberto | por |
dc.subject | Hydrogen | eng |
dc.subject | Projection | eng |
dc.subject | Bass model | eng |
dc.subject | Storage | eng |
dc.title | Potencial de oferta do hidrogênio como vetor energético no Brasil com base na análise da técnica de dinâmica de sistemas | por |
dc.type | Trabalho Publicado em Evento | por |
dc.description.resumo | In this work, the projection of hydrogen supply as an energy vector for integration into electrical systems is explored. The Bass model with variable innovation coefficients is used to design different green hydrogen (H2V) production curves in Brazil. And the system dynamics technique is applied to the model. The results show that in the Power-to-Power model, regardless of efficiency, the process requires more energy than that stored as H2V. Therefore, the careful use of electrical energy for storage in H2V is essential, since unlike other primary energy sources electrical energy is not freely found in nature. As for the projections, with the conservative growth and likely to occur the supply of H2V in Brazil in 10 years (2033) would represent about 10.64% of the global demand that will be about 240.7 million m3 approximately. https://doi.org/10.53316/sepoc2023.017 | por |
dc.publisher.country | Brasil | por |
dc.subject.cnpq | CNPQ::ENGENHARIAS::ENGENHARIA ELETRICA | por |
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Proceedings of the 15th Seminar on Power Electronics and Control (SEPOC 2023) [51]
The SEPOC 2023 was an international technical, scientific, and industrial event, with the support of IEEE. Its main objective of was to provide interaction among academia and industry to discuss the latest cutting-edge technologies on Power Electronics and Control and their applications. In 2023, the main topic of the seminar was: Energy Transition: Driving decarbonization through innovative solutions and technologies applied to Power Electronics and Distributed Generation. The event was open to the national and international community, being a great opportunity for technical discussions and bringing together researchers, engineers, entrepreneurs, and students.
Conference Chair and Proceedings Editor: Prof. Dr. Laura Lisiane Callai dos Santos
Conference Co-Chair and Proceedings Co-Editor: Prof. Dr. Nelson Knak Neto
Proceedings Co-Editors: Prof. Dr. Gustavo Guilherme Koch
Prof. Dr. Thieli Smidt Gabbi
IEEE Proceedings: https://doi.org/10.1109/SEPOC58810.2023www.sepoc.com.br