Estimation of transient heat flux density during the heat supply of a catalytic wall steam methane reformer

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TitreEstimation of transient heat flux density during the heat supply of a catalytic wall steam methane reformer
Type de publicationJournal Article
Year of Publication2018
AuteursSettar A, Abboudi S, Madani B, Nebbali R
JournalHEAT AND MASS TRANSFER
Volume54
Pagination385-391
Date PublishedFEB
Type of ArticleArticle
ISSN0947-7411
Mots-clésCatalytic-wall steam methane reformer, Function specification method, Heat flux estimation, Inverse methods
Résumé

Due to the endothermic nature of the steam methane reforming reaction, the process is often limited by the heat transfer behavior in the reactors. Poor thermal behavior sometimes leads to slow reaction kinetics, which is characterized by the presence of cold spots in the catalytic zones. Within this framework, the present work consists on a numerical investigation, in conjunction with an experimental one, on the one-dimensional heat transfer phenomenon during the heat supply of a catalytic-wall reactor, which is designed for hydrogen production. The studied reactor is inserted in an electric furnace where the heat requirement of the endothermic reaction is supplied by electric heating system. During the heat supply, an unknown heat flux density, received by the reactive flow, is estimated using inverse methods. In the basis of the catalytic-wall reactor model, an experimental setup is engineered in situ to measure the temperature distribution. Then after, the measurements are injected in the numerical heat flux estimation procedure, which is based on the Function Specification Method (FSM). The measured and estimated temperatures are confronted and the heat flux density which crosses the reactor wall is determined.

DOI10.1007/s00231-017-2131-3