2017
DOI: 10.1002/htj.21294
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Influence of chemically reactive species and a volumetric heat source or sink on mixed convection over an exponentially decreasing mainstream

Abstract: In this paper, we investigate mixed convection flow over an exponentially decreasing freestream velocity in presence of nonlinear chemically reactive species and a volumetric heat source or sink. Nonsimilar transformations are used to reduce the boundary layer equations into dimensionless equations and are further solved by the implicit finite difference scheme in combination with the quasi-

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Cited by 5 publications
(2 citation statements)
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“…This paper has studied the homogeneous and surface reactions in the mixed convection flow over a slender cylinder. The governing equations of the problem are a set of highly nonlinear partial differential equations whose approximate numerical solutions are obtained by using the method of the implicit finite difference scheme aided by the quasilinearization technique [27][28][29][30] . Here, an agglomeration of nanoparticles to the fluid is not considered due to hybrid nanofluid formed as a stable compound.…”
Section: Introductionmentioning
confidence: 99%
“…This paper has studied the homogeneous and surface reactions in the mixed convection flow over a slender cylinder. The governing equations of the problem are a set of highly nonlinear partial differential equations whose approximate numerical solutions are obtained by using the method of the implicit finite difference scheme aided by the quasilinearization technique [27][28][29][30] . Here, an agglomeration of nanoparticles to the fluid is not considered due to hybrid nanofluid formed as a stable compound.…”
Section: Introductionmentioning
confidence: 99%
“…ნაშრომებში(Zhang, Lin, Shi, & Zhang, 2021) და (Lee & Ryou, A numerical study on smoke movement in longitudinal ventilation tunnel fires for different aspect ratio. ნაშრომებში(Lou, Rifu, Hu, Jiyun, & Zhenwen, 2020);(Patil, Kumbarwadi, & Momoniat, 2018);(Savalanpour, Farhanieh, & Afshin,…”
mentioning
confidence: 99%