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Exergy Analysis of Steam Methane Reforming Process in Computational Fluid Dynamics (CFD) Environment

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dc.contributor.author Zia, Ul Rehman
dc.date.accessioned 2020-11-05T05:34:21Z
dc.date.available 2020-11-05T05:34:21Z
dc.date.issued 2019-04
dc.identifier.uri http://10.250.8.41:8080/xmlui/handle/123456789/9993
dc.description Supervisor Name: Dr. Iftikhar Ahmad
dc.description.abstract Steam methane reforming (SMR) is a dominant technology for hydrogen production. For the highly energy-efficient operation, robust energy analysis is crucial. In particular, exergy analysis has received the attention of researchers due to its advantage over the conventional energy analysis. In this work, an exergy analysis based on the computational fluid dynamics (CFD)-based method was applied to a monolith microreactor of SMR. Initially, a CFD model of SMR was developed using literature data. Then, the design and operating conditions of the microreactor were optimized based on the developed CFD model to achieve higher conversion efficiency and shorter length. Exergy analysis of the optimized microreactor was performed using the custom field function (CFF) integrated with the CFD environment. The optimized catalytic monolith microreactor of SMR achieved higher conversion efficiency at a smaller consumption of energy, catalyst, and material of construction than the reactor reported in the literature. The exergy analysis algorithm helped in evaluating length-wise profiles of all three types of exergy, namely, physical exergy, chemical exergy, and mixing exergy, in the microreactor. en_US
dc.publisher SCME NUST en_US
dc.subject Exergy, Analysis, Steam Methane, Reforming, Process, en_US
dc.title Exergy Analysis of Steam Methane Reforming Process in Computational Fluid Dynamics (CFD) Environment en_US
dc.type Thesis en_US


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