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- W4282984541 abstract "The surface roughness of microfluidic devices having biomedical and industrial applications in the fabrication technology is an important factor. Such roughness on the microchannel surface produces disturbance in thermo-fluidic transport, affecting its efficient performance. The present analysis aims to estimate such disturbances on the thermo-fluidic transport with combined electromagnetohydrodynamic (EMHD) flow in a porous microchannel having complex wavy roughness walls. The governing equations for thermo-fluidic transport are solved analytically by employing the perturbation technique. The volumetric flow rate is derived analytically and the Nusselt number is computed numerically. The velocity and temperature distribution are interpreted graphically and discussed the importance of different pertinent parameters. The changes in the flow pattern and the disturbance in heat transfer performance are examined properly for different degrees of roughness (wave amplitude ratio). The velocity profiles become fully developed in a transverse electric field and the disturbance is shown at the boundary layers. Furthermore, the higher permeability of the porous medium and roughness of the microchannel reduces the volume flow rate, but the roughness of the surface of the microchannel enhances the rate of heat transfer." @default.
- W4282984541 created "2022-06-17" @default.
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- W4282984541 date "2022-10-01" @default.
- W4282984541 modified "2023-10-13" @default.
- W4282984541 title "Electromagnetohydrodynamic thermo-fluidic transport in a porous microchannel with wall roughness" @default.
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- W4282984541 doi "https://doi.org/10.1016/j.colsurfa.2022.129336" @default.
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