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Melting heat transfer and thermal radiation effects on MHD tangent hyperbolic nanofluid flow with chemical reaction and activation energy

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In this research, we take into account tangent hyperbolic nanofluid flow along a moving stretched surface with thermal radiation, exothermic/endothermic chemical reaction and activation energy effects under melting condition. Governing… Click to show full abstract

In this research, we take into account tangent hyperbolic nanofluid flow along a moving stretched surface with thermal radiation, exothermic/endothermic chemical reaction and activation energy effects under melting condition. Governing PDE are transformed to dimensionless non-linear ODE with the add of appropriate similarity variables. The resulting non-linear ODE are solved numerically. The flow parameters influences on the fluid?s velocity, temperature, and concentration distributions are investigated. The results revealed that temperature profile is declining while concentration and velocity profiles are increasing for enhancing melting parameter.

Keywords: thermal radiation; reaction activation; chemical reaction; nanofluid flow; hyperbolic nanofluid; tangent hyperbolic

Journal Title: Thermal Science
Year Published: 2023

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