نتایج جستجو برای: eyring powell nanofluid
تعداد نتایج: 7187 فیلتر نتایج به سال:
We examine thermal management in the heat exchange of compact density nanoentities crude base liquids. It demands study and flow problem with non-uniform physical properties. This was conceived to analyze magnetohydrodynamic Eyring–Powell nanofluid transformations due slender sheets varying thicknesses. Temperature-dependent conductivity viscosity prevail. Bioconvection motivated dynamic microo...
This article investigates the nonlinear, steady boundary layer flow and heat transfer of an incompressible Eyring-Powell non-Newtonian fluid from an isothermal sphere with Biot number effects. The transformed conservation equations are solved numerically subject to physically appropriate boundary conditions using a second-order accurate implicit finite-difference Keller Box technique. The influ...
Abstract This communication presents a comparative analysis of two-dimensional cross flow non-Newtonian fluid with heat and mass transfer is presented in this article. Eyring-Powell chosen as the main carrier nano species through uniform horizontal channel. Effects suction are also taken into account by placing porous walls. Main source motion upper plate that moves constant velocity axial dire...
The behavior of convective boundary conditions is studied to delineate their role in heat and mass relegation the presence radiation, chemical reaction, hydro-magnetic forces three-dimensional Powell–Eyring nanofluids. Implications concerning non-Fourier’s flux non-Fick’s with respect temperature nanoparticle concentration were examined discuss graphical attributes principal parameters. An effi...
The aim here is to investigate the effects of convective heat and mass transfer in the flow of Eyring-Powell fluid past an inclined exponential stretching surface. Mathematical formulation and analysis have been performed in the presence of Soret, Dufour and thermal radiation effects. The governing partial differential equations corresponding to the momentum, energy and concentration are reduce...
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