2021
DOI: 10.1108/hff-08-2020-0520
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Entropy generation of natural heat exchange into a porous medium accumulated by a hybrid nanoliquid applying LTNE model

Abstract: Purpose This study aims to use the thermal non-equilibrium approach to inquire the entropy production and conjugate natural heat exchange in a porous medium. Entropy generation is studied separately for the solid matrix and the hybrid nanoliquid. Design/methodology/approach The characteristic equations are unraveled by applying the finite element method. Mathematical relations are used to calculate the generated entropy for the hybrid nanoliquid and matrix structure. Findings Based on the results, the prod… Show more

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Cited by 3 publications
(1 citation statement)
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“…The same authors have also explored the natural or double-diffusive phenomena in their research articles (Kumar et al , 2023b, 2021). Furthermore, several other researchers have also paid attention to studying the entropy generation in conventional physical domains (Shaker et al , 2022; Ishak et al , 2020; Tayebi and Chamkha, 2019; Kardgar, 2021; Hussain et al , 2018; Singh et al , 2015b; Alipanah et al , 2015; Das and Basak, 2017; Roşca et al , 2023).…”
Section: Introductionmentioning
confidence: 99%
“…The same authors have also explored the natural or double-diffusive phenomena in their research articles (Kumar et al , 2023b, 2021). Furthermore, several other researchers have also paid attention to studying the entropy generation in conventional physical domains (Shaker et al , 2022; Ishak et al , 2020; Tayebi and Chamkha, 2019; Kardgar, 2021; Hussain et al , 2018; Singh et al , 2015b; Alipanah et al , 2015; Das and Basak, 2017; Roşca et al , 2023).…”
Section: Introductionmentioning
confidence: 99%