International Journal of Chemical Reactor Engineering · 2018 · 18 citations · 38 references
Numerical AnalysisEngineeringFluid MechanicsMechanical EngineeringConvective Heat TransferNon-uniform Heat AbsorptionNonlinear ExpressionsHeat Transfer ProcessMixed ConvectionNumerical SimulationNon-uniform Heat SinkMagnetohydrodynamicsTransport PhenomenaNatural ConvectionPhysicsFlow PhysicNumerical BenchmarksHeat TransferMultiphase FlowNumerical Method For Partial Differential EquationThermal Engineering
Abstract The electrically conducting three-dimensional Williamson fluid flow produced by the movement of sheet via porous medium under non-uniform heat sink and source, thermal radiation and convective boundary condition is examined. The system of nonlinear expressions is transformed into nonlinear ordinary differential system of equations. These governing expressions are evaluated numerically with the help of boundary value problem default solver in MATLAB bvp4c package. Pertinent results are demonstrated graphically to execute the effects of various governing parameters on dimensionless fields. The aspects of constraints on skin-friction, mass and heat transport rates are characterized via numerical benchmarks. It is noticed that the transverse and axial velocities are depreciated by respective Williamson fluid parameters, while the opposite trend is noticed on concentration and temperature fields.
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The Flow of Pseudoplastic Materials
R. V. Williamson · Industrial & Engineering Chemistry · 1929 · 587 citations
MHD three-dimensional Casson fluid flow past a porous linearly stretching sheet
S. Nadeem, Rizwan Ul Haq, Noreen Sher Akbar et al. · Alexandria Engineering Journal · 2013 · 366 citations · Full text
Flow and heat transfer analysis of Williamson nanofluid
S. Nadeem, S.T. Hussain · Applied Nanoscience · 2013 · 217 citations · Full text