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Dive into the research topics where G. Jithender Reddy is active.

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Featured researches published by G. Jithender Reddy.


Journal of Computational Design and Engineering | 2016

Thermal diffusion and diffusion thermo effects on an unsteady heat and mass transfer magnetohydrodynamic natural convection Couette flow using FEM

R. Srinivasa Raju; G. Jithender Reddy; J. Anand Rao; Mohammad Mehdi Rashidi

Abstract The numerical solutions of unsteady hydromagnetic natural convection Couette flow of a viscous, incompressible and electrically conducting fluid between the two vertical parallel plates in the presence of thermal radiation, thermal diffusion and diffusion thermo are obtained here. The fundamental dimensionless governing coupled linear partial differential equations for impulsive movement and uniformly accelerated movement of the plate were solved by an efficient Finite Element Method. Computations were performed for a wide range of the governing flow parameters, viz., Thermal diffusion (Soret) and Diffusion thermo (Dufour) parameters, Magnetic field parameter, Prandtl number, Thermal radiation and Schmidt number. The effects of these flow parameters on the velocity (u), temperature (θ) and Concentration (ϕ) are shown graphically. Also the effects of these pertinent parameters on the skin-friction, the rate of heat and mass transfer are obtained and discussed numerically through tabular forms. These are in good agreement with earlier reported studies. Analysis indicates that the fluid velocity is an increasing function of Grashof numbers for heat and mass transfer, Soret and Dufour numbers whereas the Magnetic parameter, Thermal radiation parameter, Prandtl number and Schmidt number lead to reduction of the velocity profiles. Also, it is noticed that the rate of heat transfer coefficient and temperature profiles increase with decrease in the thermal radiation parameter and Prandtl number, whereas the reverse effect is observed with increase of Dufour number. Further, the concentration profiles increase with increase in the Soret number whereas reverse effect is seen by increasing the values of the Schmidt number.


International Journal for Computational Methods in Engineering Science and Mechanics | 2017

Finite element solutions of free convective Casson fluid flow past a vertically inclined plate submitted in magnetic field in presence of heat and mass transfer

R. Srinivasa Raju; B. Mahesh Reddy; G. Jithender Reddy

ABSTRACT The aim of this research work is to study the influence of thermal radiation on steady magnetohydrodynamic-free convective Casson fluid flow of an optically thick fluid over an inclined vertical plate with heat and mass transfer. Combined phenomenon of heat and mass transfer is considered. Numerical solutions in general form are obtained by using the finite element method. The sum of thermal and mechanical parts is expressed as velocity of fluid. Corresponding limiting solutions are also reduced from the general solutions. It is found that the obtained numerical solutions satisfy all imposed initial and boundary conditions and reduce to some known solutions from the literature as special cases. Numerical results for the controlling flow parameters are drawn graphically and discussed in detail. In some special cases, the obtained numerical results are compared and found to be in good agreement with the previously published results which are available in literature. Applications of this study includes laminar magneto-aerodynamics, materials processing and magnetohydrodynamic propulsion thermo-fluid dynamics, etc.


Archive | 2018

Viscous dissipation impact on MHD free convection radiating fluid flow past a vertical porous plate

R. Srinivasa Raju; G. Jithender Reddy; M. Anil Kumar

An attempt has been made to study the radiation effects on unsteady MHD free convective flow of an incompressible fluid past an infinite vertical porous plate in the presence of viscous dissipation. The governing partial differential equations are solved numerically by using Galerkin finite element method. Computations were performed for a wide range of governing flow parameters viz., Magnetic Parameter, Schmidt number, Thermal radiation, Prandtl number, Eckert number and Permeability parameter. The effects of these flow parameters on velocity, temperature are shown graphically. In addition the local values of the Skin friction coefficient are shown in tabular form.


International Journal of Thermal Sciences | 2016

Analytical and Numerical study of unsteady MHD free convection flow over an exponentially moving vertical plate with Heat Absorption

R. Srinivasa Raju; G. Jithender Reddy; J. Anand Rao; Mohammad Mehdi Rashidi; Rama Subba Reddy Gorla


Transactions of A. Razmadze Mathematical Institute | 2016

Thermal diffusion and diffusion thermo effects on unsteady MHD fluid flow past a moving vertical plate embedded in porous medium in the presence of Hall current and rotating system

G. Jithender Reddy; R. Srinivasa Raju; P. Manideep; J. Anand Rao


Ain Shams Engineering Journal | 2017

Influence of viscous dissipation on unsteady MHD natural convective flow of Casson fluid over an oscillating vertical plate via FEM

G. Jithender Reddy; R. Srinivasa Raju; J. Anand Rao


Journal of Porous Media | 2017

THERMAL DIFFUSION AND DIFFUSION THERMO IMPACT ON CHEMICAL REACTED MHD FREE CONVECTION FROM AN IMPULSIVELY STARTED INFINITE VERTICAL PLATE EMBEDDED IN A POROUS MEDIUM USING FEM

G. Jithender Reddy; R. Srinivasa Raju; J. Anand Rao


Journal of Nanofluids | 2017

Influence of Angle of Inclination on Unsteady MHD Casson Fluid Flow Past a Vertical Surface Filled by Porous Medium in Presence of Constant Heat Flux, Chemical Reaction and Viscous Dissipation

R. Srinivasa Raju; B. Mahesh Reddy; G. Jithender Reddy


International Journal of Mathematical Archive | 2014

FINITE ELEMENT ANALYSIS OF SORET AND RADIATION EFFECTS ON TRANSIENT MHD FREE CONVECTION FROM AN IMPULSIVELY STARTED INFINITE VERTICAL PLATE WITH HEAT ABSORPTION

G. Jithender Reddy; R. Srinivasa Raju; Siva Reddy Sheri


Archive | 2018

MHD free convection heat transfer couette flow in rotating system

G. Jithender Reddy; P. Manideep; R. Srinivasa Raju

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Siva Reddy Sheri

Gandhi Institute of Technology and Management

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