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Impacts of slip and mass transpiration on Newtonian liquid flow over a porous stretching sheet
This article focuses on analytic solutions for Newtonian fluid flow with slip and mass transpiration on a porous stretching sheet using the differential transform method and Pade approximants of an exceptionally nonlinear differential equation. The impacts of different parameters including mass transpiration (suction/injection), Navier's slip, and Darcy number parameters on the velocity of the liquid and tangential stress are discussed. A comprehensive comparison of our results with the previous one in the literature is made, and the results showed good agreement. An investigation is conducted of a combination of magnetic liquids that are conceivably pertinent for wound medicines, skin repair, and astute coatings for natural gadgets. It is found that there is a decrease in the velocity profiles and the boundary layer thickness for the case of suction.
Impacts of slip and mass transpiration on Newtonian liquid flow over a porous stretching sheet
This article focuses on analytic solutions for Newtonian fluid flow with slip and mass transpiration on a porous stretching sheet using the differential transform method and Pade approximants of an exceptionally nonlinear differential equation. The impacts of different parameters including mass transpiration (suction/injection), Navier's slip, and Darcy number parameters on the velocity of the liquid and tangential stress are discussed. A comprehensive comparison of our results with the previous one in the literature is made, and the results showed good agreement. An investigation is conducted of a combination of magnetic liquids that are conceivably pertinent for wound medicines, skin repair, and astute coatings for natural gadgets. It is found that there is a decrease in the velocity profiles and the boundary layer thickness for the case of suction.
Impacts of slip and mass transpiration on Newtonian liquid flow over a porous stretching sheet
Nagaraju, Koratagere Revanna (author) / Mahabaleshwar, Ulavathi Shettar (author) / Siddalinga Prasad, Muddenahalli (author) / Souayeh, Basma (author)
Heat Transfer ; 51 ; 5288-5301
2022-09-01
14 pages
Article (Journal)
Electronic Resource
English
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