4.7 Article

Numerical simulation of buoyancy peristaltic flow of Johnson-Segalman nanofluid in an inclined channel

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RESULTS IN PHYSICS
卷 9, 期 -, 页码 906-915

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ELSEVIER SCIENCE BV
DOI: 10.1016/j.rinp.2018.03.037

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Peristalsis; Johnson-Segalman nanofluid; Hall effect; Mixed convection; MHD; Slip conditions; Compliant walls; Thermal radiation; Numerical solutions

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This study addresses mixed convection on peristaltic flow in an inclined channel. The relevant flow problem is developed for MHD Johnson-Segalman nanofluid. Hall current and thermal radiation are discussed. Channel boundaries are compliant in nature. Slip effects for velocity, temperature and concentration are examined. Long wavelength concept is employed. Variations for prominent parameters in velocity, temperature, concentration, heat transfer coefficient and streamlines are obtained via built-in numerical approach. Velocity shows significant decline for larger local temperature Grashof number. Heat transfer slows down for increasing thermophoresis and thermal slip parameters. Increase in bolus is reported for higher Weissenberg number.

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