A New Fractional Exothermic Reactions Model Having Constant Heat Source in Porous Media With Power, Exponential and Mittag-Leffler Laws
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Date
2019
Journal Title
Journal ISSN
Volume Title
Publisher
Pergamon-elsevier Science Ltd
Open Access Color
Green Open Access
No
OpenAIRE Downloads
OpenAIRE Views
Publicly Funded
No
Abstract
The present article deals with the exothermic reactions model having constant heat source in the porous media with strong memory effects. The Caputo, Caputo-Fabrizio and Atangana-Baleanu fractional operators are used to induce memory effects in the mathematical modeling of exothermic reactions. The patterns of heat flow profiles are very essential for heat transfer in every kind of the thermal insulation. In the present investigation, we focus on the driving force problem due to the fact that temperature gradient is assumed. The mathematical equation of the problem is confined in a fractional energy balance equation (FEBE), which furnishes the temperature portrayal in conduction state having uniform heat source on steady state. The fractional Laplace decomposition technique is utilized to obtain the numerical solution of the corresponding FEBE describing the exothermic reactions. Some numerical results for the fractional exothermic reactions model are presented through graphs and tables. (C) 2019 Elsevier Ltd. All rights reserved.
Description
Kalra, D/0000-0001-5254-4067; , Kumud Tanwar/0009-0006-1885-3388; Kumar, Devendra/0000-0003-4249-6326
Keywords
Fractional Exothermic Reactions Model, Porous Media, Heat Source, Fractional Derivatives, Fldm
Fields of Science
0103 physical sciences, 01 natural sciences
Citation
Kumar, Devendra...et al. (2019). "A new fractional exothermic reactions model having constant heat source in porous media with power, exponential and Mittag-Leffler laws", International Journal of Heat and Mass Transfer, Vol. 138, pp. 1222-1227.
WoS Q
Q1
Scopus Q
Q1

OpenCitations Citation Count
204
Source
International Journal of Heat and Mass Transfer
Volume
138
Issue
Start Page
1222
End Page
1227
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Citations
CrossRef : 205
Scopus : 199
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Mendeley Readers : 34
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