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The Role of Double-Diffusion Convection and Induced Magnetic Field on Peristaltic Pumping of a Johnson–Segalman Nanofluid in a Non-Uniform Channel

Yasir Khan, Safia Akram, Maria Athar, Khalid Saeed, Taseer Muhammad, Anwar Hussain, Muhammad Imran, H. A. Alsulaimani

2022Nanomaterials30 citationsDOIOpen Access PDF

Abstract

The peristaltic propulsion of a Johnson-Segalman nanofluid under the dependency of a double-diffusion convection and induced magnetic field was investigated in this study. On the premise of continuity, linear momentum, solute concentration, thermal energy, and nanoparticle concentration, a flow issue was proposed. The lubrication methodology was used to carry out mathematical modelling. Numerical techniques were used to solve the corresponding highly nonlinear partial differential equations. The exact solution of concentration, temperature, and nanoparticle were computed. The manifestations of all relevant constraints were theoretically and graphically evaluated. The current study develops a theoretical model that can predict how various parameters affect the characteristics of blood-like fluid flows.

Topics & Concepts

NanofluidMechanicsConvectionMagnetic fieldNonlinear systemDiffusionPartial differential equationLubricationLubrication theoryMaterials scienceCombined forced and natural convectionFlow (mathematics)ThermodynamicsHeat transferPhysicsNatural convectionQuantum mechanicsNanofluid Flow and Heat TransferFluid Dynamics and Thin FilmsFluid Dynamics and Turbulent Flows
The Role of Double-Diffusion Convection and Induced Magnetic Field on Peristaltic Pumping of a Johnson–Segalman Nanofluid in a Non-Uniform Channel | Litcius