Hall current and Joule heating effects on peristaltic flow of viscous fluid in a rotating channel with convective boundary conditions

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Abstract

The present article has been arranged to study the Hall current and Joule heating effects on peristaltic flow of viscous fluid in a channel with flexible walls. Both fluid and channel are in a state of solid body rotation. Convective conditions for heat transfer in the formulation are adopted. Viscous dissipation in energy expression is taken into account. Resulting differential systems after invoking small Reynolds number and long wavelength considerations are numerically solved. Runge-Kutta scheme of order four is implemented for the results of axial and secondary velocities, temperature and heat transfer coefficient. Comparison with previous limiting studies is shown. Outcome of new parameters of interest is analyzed.

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Hayat, T., Zahir, H., Alsaedi, A., & Ahmad, B. (2017). Hall current and Joule heating effects on peristaltic flow of viscous fluid in a rotating channel with convective boundary conditions. Results in Physics, 7, 2831–2836. https://doi.org/10.1016/j.rinp.2017.07.069

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