Dr. Degavath Gopal

About Dr. Degavath Gopal

Dr. Degavath Gopal, With an exceptional h-index of 8 and a recent h-index of 8 (since 2020), a distinguished researcher at Osmania University, specializes in the field of FLUID DYNAMICS.

His recent articles reflect a diverse array of research interests and contributions to the field:

One dimensional radiative nanofluid flow with heat generative Al2 O3-H2O and Cu-H2O nanoparticles reactions chemically

Parametric study of MHD, heat absorption/generation and diffusion of mass on one dimensional unsteady, chemically reacting flow employing Finite Element method

Impact of convective heat transfer and buoyancy on micropolar fluid flow through a porous shrinking sheet: An FEM approach

A numerical study of viscous dissipation with first order chemical reaction and ohmic effects on MHD nanofluid flow through an exponential stretching sheet

Numerical approach for enhanced mass transfer of Bio-convection on Magneto-hydrodynamic Carreau fluid flow through a nonlinear stretching surface

Three dimensional MHD nanoluid stagnation point low withhigher order chemical reaction

Analytical impact of Carreau nanofluid model under the influence of chemical reaction, Soret and Dufour over inclined stretching cylinder

Modelling entropy in magnetized flow of eyring–powell nanofluid through nonlinear stretching surface with chemical reaction: a finite element method approach

Dr. Degavath Gopal Information

University

Position

___

Citations(all)

240

Citations(since 2020)

238

Cited By

36

hIndex(all)

8

hIndex(since 2020)

8

i10Index(all)

5

i10Index(since 2020)

5

Email

University Profile Page

Google Scholar

Dr. Degavath Gopal Skills & Research Interests

FLUID DYNAMICS

Top articles of Dr. Degavath Gopal

Title

Journal

Author(s)

Publication Date

One dimensional radiative nanofluid flow with heat generative Al2 O3-H2O and Cu-H2O nanoparticles reactions chemically

AIP Conference Proceedings

Kune Ramesh

S Jagadha

D Gopal

S Naik

N Kishan

2023/12/26

Parametric study of MHD, heat absorption/generation and diffusion of mass on one dimensional unsteady, chemically reacting flow employing Finite Element method

Materials Today: Proceedings

Ramesh Kune

S Jagadha

S Hari Shing Naik

N Kishan

D Gopal

2023/1/1

Impact of convective heat transfer and buoyancy on micropolar fluid flow through a porous shrinking sheet: An FEM approach

Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science

Degavath Gopal

Hina Firdous

Salman Saleem

Naikoti Kishan

2022/4

A numerical study of viscous dissipation with first order chemical reaction and ohmic effects on MHD nanofluid flow through an exponential stretching sheet

Materials Today: Proceedings

D Gopal

S Jagadha

P Sreehari

N Kishan

D Mahendar

2022/1/1

Numerical approach for enhanced mass transfer of Bio-convection on Magneto-hydrodynamic Carreau fluid flow through a nonlinear stretching surface

Materials Today: Proceedings

G Narsimulu

D Gopal

Rama Udaikumar

2022/1/1

Three dimensional MHD nanoluid stagnation point low withhigher order chemical reaction

Journal of Thermal Engineering

S Jagadha

D Gopal

P Vijay Kumar

N Kishan

P Durgaprasad

2022/11/3

Analytical impact of Carreau nanofluid model under the influence of chemical reaction, Soret and Dufour over inclined stretching cylinder

International Communications in Heat and Mass Transfer

D Gopal

Shankar Rao Munjam

N Kishan

2022/6/1

Modelling entropy in magnetized flow of eyring–powell nanofluid through nonlinear stretching surface with chemical reaction: a finite element method approach

Nanomaterials

Salman Saleem

Degavath Gopal

Nehad Ali Shah

Nosheen Feroz

Naikoti Kishan

...

2022/5/25

Numerical analysis of higher order chemical reaction on electrically MHD nanofluid under influence of viscous dissipation

Alexandria Engineering Journal

D Gopal

S Saleem

S Jagadha

Farooq Ahmad

A Othman Almatroud

...

2021/2/1

Soret and Dufour effects of electrical MHD Nanofluid with higher order chemical reaction

Test Eng. Manag

S Jagadha

Degavath Gopal

N Kishan

2020/1

Nanofluid flow of higher order radiative chemical reaction with effects of melting and viscous dissipation

Journal of Physics: Conference Series

S Jagadha

Degavath Gopal

N Kishan

2020

Heat and mass transfer mechanism on three-dimensional flow of inclined magneto Carreau nanofluid with chemical reaction

Archives of Thermodynamics

B Madhusudhana Rao

Degavath Gopal

Naikoti Kishan

Saad Ahmed

Putta Durga Prasad

2020

See List of Professors in Dr. Degavath Gopal University(Osmania University)

Co-Authors

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