His scientific interests lie mostly in Mechanics, Thermodynamics, Classical mechanics, Nanofluid and Laminar flow. His Mechanics study deals with Porous medium intersecting with Wavenumber. His study in the fields of Thermophoresis, Boundary layer, Natural convection and Nusselt number under the domain of Thermodynamics overlaps with other disciplines such as Chemistry.
In Boundary layer, he works on issues like Boundary value problem, which are connected to Nonlinear system, Numerical analysis, Composite material, Functionally graded material and Newtonian fluid. O. Anwar Bég interconnects Bejan number, Isothermal process, Open-channel flow, Homotopy analysis method and Magnetic field in the investigation of issues within Classical mechanics. His Laminar flow study integrates concerns from other disciplines, such as Slip, Slip ratio, Prandtl number and Transport phenomena.
His primary areas of study are Mechanics, Heat transfer, Boundary layer, Nusselt number and Boundary value problem. His work carried out in the field of Mechanics brings together such families of science as Classical mechanics and Thermodynamics. His Heat transfer study combines topics in areas such as Grashof number, Eckert number, Convection and Transport phenomena.
His Boundary layer research includes themes of Natural convection, Combined forced and natural convection and Slip. The concepts of his Nusselt number study are interwoven with issues in Parasitic drag, Schmidt number and Biot number. His Boundary value problem research integrates issues from Momentum, Nonlinear system, Magnetohydrodynamic drive, Numerical analysis and Newtonian fluid.
O. Anwar Bég mainly focuses on Mechanics, Heat transfer, Nanofluid, Nusselt number and Boundary value problem. His work is connected to Prandtl number, Boundary layer, Grashof number, Laminar flow and Natural convection, as a part of Mechanics. His Heat transfer research incorporates elements of Convection, Bejan number, Transport phenomena and Reynolds number.
His studies in Nanofluid integrate themes in fields like Slip, Partial differential equation and Homotopy analysis method, Nonlinear system. His studies deal with areas such as Biot number, Thermal conductivity and Rayleigh number as well as Nusselt number. The Boundary value problem study combines topics in areas such as Magnetohydrodynamics, Volumetric flow rate, Brownian motion, Drag and Fluid dynamics.
O. Anwar Bég mainly investigates Mechanics, Boundary value problem, Nanofluid, Prandtl number and Heat transfer. In his research on the topic of Mechanics, Buoyancy is strongly related with Magnetohydrodynamics. The study incorporates disciplines such as Slip, Volumetric flow rate and Flow velocity in addition to Boundary value problem.
His research in Prandtl number intersects with topics in Biot number, Hartmann number, Convective heat transfer and Nonlinear system. His Heat transfer course of study focuses on Bejan number and Darcy number and Incompressible flow. His study in Nusselt number is interdisciplinary in nature, drawing from both Partial differential equation and Boundary layer.
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An efficient and simple higher order shear and normal deformation theory for functionally graded material (FGM) plates
Zakaria Belabed;Mohammed Sid Ahmed Houari;Abdelouahed Tounsi;S.R. Mahmoud.
Composites Part B-engineering (2014)
An efficient and simple higher order shear and normal deformation theory for functionally graded material (FGM) plates
Zakaria Belabed;Mohammed Sid Ahmed Houari;Abdelouahed Tounsi;S.R. Mahmoud.
Composites Part B-engineering (2014)
Bending analysis of FGM plates under hygro-thermo-mechanical loading using a four variable refined plate theory
Mohamed Zidi;Abdelouahed Tounsi;Mohammed Sid Ahmed Houari;El Abbas Adda Bedia.
Aerospace Science and Technology (2014)
Bending analysis of FGM plates under hygro-thermo-mechanical loading using a four variable refined plate theory
Mohamed Zidi;Abdelouahed Tounsi;Mohammed Sid Ahmed Houari;El Abbas Adda Bedia.
Aerospace Science and Technology (2014)
Bending and buckling analyses of functionally graded material (FGM) size-dependent nanoscale beams including the thickness stretching effect
Fouzia Larbi Chaht;Abdelhakim Kaci;Mohammed Sid Ahmed Houari;Abdelouahed Tounsi.
Steel and Composite Structures (2015)
Bending and buckling analyses of functionally graded material (FGM) size-dependent nanoscale beams including the thickness stretching effect
Fouzia Larbi Chaht;Abdelhakim Kaci;Mohammed Sid Ahmed Houari;Abdelouahed Tounsi.
Steel and Composite Structures (2015)
A study on peristaltic flow of nanofluids: Application in drug delivery systems
Dharmendra Tripathi;O. Anwar Bég.
International Journal of Heat and Mass Transfer (2014)
A study on peristaltic flow of nanofluids: Application in drug delivery systems
Dharmendra Tripathi;O. Anwar Bég.
International Journal of Heat and Mass Transfer (2014)
Homotopy simulation of nanofluid dynamics from a non-linearly stretching isothermal permeable sheet with transpiration
M. M. Rashidi;N. Freidoonimehr;A. Hosseini;O. Anwar Bég.
Meccanica (2014)
Homotopy simulation of nanofluid dynamics from a non-linearly stretching isothermal permeable sheet with transpiration
M. M. Rashidi;N. Freidoonimehr;A. Hosseini;O. Anwar Bég.
Meccanica (2014)
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