G. S. Seth

ORCID: 0000-0003-0854-8188
Publications
Citations
Views
---
Saved
---
About
Contact & Profiles
Research Areas
  • Nanofluid Flow and Heat Transfer
  • Fluid Dynamics and Turbulent Flows
  • Heat Transfer Mechanisms
  • Heat Transfer and Optimization
  • Fluid Dynamics and Vibration Analysis
  • Heat and Mass Transfer in Porous Media
  • Geomagnetism and Paleomagnetism Studies
  • Solar and Space Plasma Dynamics
  • Characterization and Applications of Magnetic Nanoparticles
  • Rheology and Fluid Dynamics Studies
  • Fluid Dynamics and Thin Films
  • Solar Thermal and Photovoltaic Systems
  • Phase Change Materials Research
  • Aerodynamics and Fluid Dynamics Research
  • Solar Energy Systems and Technologies
  • Radiative Heat Transfer Studies
  • Heat transfer and supercritical fluids
  • Lattice Boltzmann Simulation Studies
  • Magnetic Properties and Applications
  • Field-Flow Fractionation Techniques
  • Power Transformer Diagnostics and Insulation
  • Electric Motor Design and Analysis
  • Thermal Analysis in Power Transmission
  • Fluid dynamics and aerodynamics studies
  • Thermal Radiation and Cooling Technologies

Indian Institute of Technology Dhanbad
2015-2024

Maltepe University
2019

Marmara University
2019

Heriot-Watt University
2019

Islamic Azad University, Science and Research Branch
2019

Materials and Energy Research Center
2019

Indian Institute of Technology Kharagpur
1980-1982

The intention behind carrying out this research work is to investigate the unsteady hydromagnetic boundary layer flow of a thermally radiating nanofluid past non-linear stretching sheet embedded in porous medium presence an externally applied magnetic field along with Navier’s velocity slip. governing partial differential equations, defining regime, are transformed into system ordinary equations by employing suitable similarity transformation. Optimal Homotopy Analysis Method has been...

10.1063/1.5054099 article EN Physics of Fluids 2018-12-01

Unsteady hydromagnetic natural convection flow with heat and mass transfer of an electrically conducting, viscous, incompressible, chemically reacting absorbing fluid past accelerated moving vertical plate ramped temperature surface concentration through a porous medium in the presence thermal diffusions is studied. The exact solutions momentum, energy equations, under Boussinesq approximation, are obtained closed form by Laplace Transform technique. expressions for skin friction, Nusselt...

10.1016/j.joems.2014.03.006 article EN cc-by-nc-nd Journal of the Egyptian Mathematical Society 2014-04-29

The present study tends to investigate unsteady MHD flow of a Casson fluid near vertical oscillating plate through non-Darcy porous medium.The impact Joule heating, viscous dissipation, thermo-diffusion and Newtonian heating are taken into consideration.Incorporating dimensionless variables parameters, governing non-dimensional equations solved by implicit finite difference technique Crank-Nicolson type.Numerical simulation for the velocity, temperature species concentration carried out...

10.18280/ijht.360446 article EN International Journal of Heat and Technology 2018-12-30

Numerical simulation of the Newtonian heating effect on unsteady magnetohydrodynamic (MHD) flow Casson fluid past a flat vertical plate has been carried out considering impact viscous dissipation, Joule heating, thermal diffusion, and nth order chemical reaction. The in porous medium is induced due to non-torsional oscillations solutal buoyancy forces acting along length plate. governing equations are converted into dimensionless form using appropriate non-dimensional parameters variables...

10.1615/jpormedia.2019025699 article EN Journal of Porous Media 2019-01-01

The purpose of the present analysis is to investigate Soret and Dufour effects on steady incompressible MHD nonlinear convective flow tangent hyperbolic nanofluid over a permeable stretching surface with multiple slip conditions at wall. Also, nonlinearly varying thermal radiation, heat generation chemical reaction along vanishing nanoparticle mass flux condition are taken into account. Further, Rosseland’s approximation for an optically thick grey medium used approximate due radiation....

10.1166/jon.2021.1784 article EN Journal of Nanofluids 2021-06-01

An investigation of the effects Hall current and rotation on unsteady hydromagnetic natural convection flow with heat mass transfer an electrically conducting, viscous, incompressible optically thick radiating fluid past impulsively moving vertical plate embedded in a saturated porous medium, when temperature has temporarily ramped profile, is carried out. Exact solution governing equations obtained closed form by Laplace transform technique. also case unit Schmidt number. Expressions for...

10.1016/j.asej.2013.09.014 article EN cc-by-nc-nd Ain Shams Engineering Journal 2013-10-28

Unsteady hydromagnetic natural convection boundary layer flow of a viscous, incompressible, and electrically conducting dusty fluid past an impulsively moving vertical plate with ramped temperature in the presence thermal radiation transverse magnetic field is studied. Exact solutions governing equations for particle velocities temperatures are obtained closed form by Laplace transform technique. To compare results this case that isothermal plate, exact also plate. The expressions skin...

10.1115/1.4023959 article EN Journal of Applied Mechanics 2013-08-19

Investigation of unsteady hydromagnetic natural convection flow with heat and mass transfer a viscous, incompressible, electrically conducting, chemically reactive optically thin radiating fluid past an exponentially accelerated moving vertical plate arbitrary ramped temperature embedded in saturated porous medium is carried out. Exact solutions momentum, energy concentration equations are obtained closed form by Laplace transform technique. The expressions for the shear stress, rate at both...

10.18869/acadpub.jafm.68.224.23961 article EN cc-by-nc-nd Journal of Applied Fluid Mechanics 2016-01-01

Abstract Combined free and forced convection Couette-Hartmann flow of a viscous, incompressible electrically conducting fluid in rotating channel with arbitrary walls the presence Hall current is investigated. Boundary conditions for magnetic field expressions shear stresses at mass rate are derived. Asymptotic analysis solution large values rotation parameters performed to highlight nature modified Ekmann Hartmann boundary layers. Numerical non-linear energy equation heat transfer computed...

10.1017/jmech.2016.70 article EN Journal of Mechanics 2016-08-17

Purpose The purpose of this paper is to assess steady, two-dimensional natural convection flow a viscoelastic, incompressible, electrically conducting and optically thick heat-radiating nanofluid over linearly stretching sheet in the presence uniform transverse magnetic field taking Dufour Soret effects into account.

10.1108/ec-10-2015-0290 article EN Engineering Computations 2017-04-18

In the present study, an analysis for steady hydromagnetic mixed convective generalised Couette flow between two infinite parallel plates of arbitrary electrical conductivities and finite thicknesses filled with a porous medium in presence uniform transverse magnetic field rotating system Hall effect is presented. The heat transfer characteristics fluid flows are also investigated, taking viscous Joule dissipations into account. Exact solutions resulting simultaneous ordinary differential...

10.1063/1.5054654 article EN Physics of Fluids 2018-11-01

The investigation of simultaneous impact Soret and Dufour effects on two-dimensional magnetohydrodynamic free convective flow an electrically conducting, viscous, incompressible viscoelastic fluid over a nonlinearly stretching surface with Navier's partial velocity slip boundary condition is carried out. With the help similarity transformation, governing equations; then Galerkin finite element method (FEM) incorporated to obtain approximate solution transformed equations. Computations for...

10.1615/computthermalscien.2018024728 article EN Computational Thermal Sciences An International Journal 2018-07-31
Coming Soon ...