Szczegóły publikacji

Opis bibliograficzny

Genetic algorithm-based strategy for the steam reformer optimization / Marcin PAJĄK, Grzegorz BRUS, Janusz S. SZMYD // International Journal of Hydrogen Energy ; ISSN 0360-3199. — 2023 — vol. 48 iss. 31, s. 11652–11665. — Bibliogr. s. 11664–11665, Abstr. — Publikacja dostępna online od: 2021-11-10

Autorzy (3)

Słowa kluczowe

steam reforminghydrogen productionoptimization designevolutionary computingcatalystnumerical analysis

Dane bibliometryczne

ID BaDAP145982
Data dodania do BaDAP2023-04-01
Tekst źródłowyURL
DOI10.1016/j.ijhydene.2021.10.046
Rok publikacji2023
Typ publikacjiartykuł w czasopiśmie
Otwarty dostęptak
Creative Commons
Czasopismo/seriaInternational Journal of Hydrogen Energy

Abstract

The steam reforming reaction is widely used for obtaining hydrogen. The reforming reaction has a strong endothermic character, which means it requires a considerable and continuous heat supply to proceed. Due to the process character, a highly non-uniform temperature field develops inside the reactor. It has a consequence in large temperature gradients, leading to the catalyst degradation and a reduced lifetime of the reforming unit. The aim of the presented research is to unify the temperature field developing in the reactor, for easier control of the process and extension of the reformer's life expectancy. A conventional plug-flow reactor consists of a cylindrical pipe body filled with catalyst. The presented methodology included optimizing the catalyst distribution in the reactor to acquire the most uniform temperature field possible. A genetic algorithm is selected as an optimization technique for finding the most advantageous alignment of the catalyst. It is an example of evolutionary algorithms, basing on rules similar to natural selection. The algorithm generates a random, initial population of reactors and the reforming simulation is executed for each of them. The computation results are then evaluated and ranked using predefined fitness functions. The ranked reactors parameters' are further recombined with selection probability based on the fitness values, until a whole new population is created and the algorithm's loop restarts. The higher the fitness value of a specific reactor, the higher are the chances of passing its segments composition to the proceeding generation. The fitness computation leaves a vast space for improvements, as it may be computed based on many different process' parameters. This work focuses on distinguishing differences in the algorithm performance, depending on the formula for fitness calculation. The algorithm's converging speed, overall fitness values of specimens and optimization results were investigated and compared. The results show that the algorithm with an updated fitness calculation procedure performs considerably better. Only about 50% of computational time was required, to acquire results of the same quality for the presented numerical cases, when comparing with the previously prepared procedure. © 2021 The Authors

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A multiobjective optimization of a catalyst distribution in a methane/steam reforming reactor using a genetic algorithm / Marcin PAJĄK, Szymon BUCHANIEC, Shinji Kimijima, Janusz S. SZMYD, Grzegorz BRUS // International Journal of Hydrogen Energy ; ISSN 0360-3199. — 2021 — vol. 46 iss. 38 spec. iss., s. 20183–20197. — Bibliogr. s. 20194–20196, Abstr. — Publikacja dostępna online od: 2020-05-04. — 32nd international conference on Efficiency, Cost, Optimization, Simulation and Environmental Impact of Energy Systems ECOS 2019 : Wrocław, Poland 23–28 June, 2019 and 14th International Conference on Catalysis in membrane Reactors ICCMR14 : Eindhoven, The Netherlands, 8–11 July 2019
fragment książki
#130616Data dodania: 13.10.2020
Numerical analysis of the catalyst distribution optimization in a steam reforming reactor using genetic algorithm / Marcin PAJĄK, Grzegorz BRUS, Janusz SZMYD // W: CPOTE 2020 [Dokument elektroniczny] : 6th international conference Contemporary Problems of Thermal Engineering : Online, 21-24 September 2020 : book of abstracts / ed. Lucyna Czarnowska. — Wersja do Windows. — Dane tekstowe. — [Gliwice : Silesian University of Technology, Department of Thermal Engineering], [2020]. — e-ISBN: 978-83-61506-54-6. — Ekran [1] CPOTE2020-1055-A. — Tryb dostępu: https://www.s-conferences.eu/cpote2020/BookOfAbstracts/Abstra... [2020-10-12]. — Pełny tekst w: CPOTE 2020 [Dokument elektroniczny] : proceedings of the 6th international conference on Contemporary Problems of Thermal Engineering : Poland, 21–24.09.2020 / ed. by Wojciech Stanek, [et al.]. — [S. l.] : Department of Thermal Technology. Silesian University of Technology, cop. 2020. — e-ISBN: 978-83-61506-54-6. — S. 363--374. — Wymagania systemowe: Adobe Reader. — Tryb dostępu: https://cpote.blob.core.windows.net/cpote-container/CPOTE2020_proceedings.pdf[2020-12-11]. — Bibliogr. s. 373--374, Abstr.