Amit Kumar Pandey

About Amit Kumar Pandey

Amit Kumar Pandey, With an exceptional h-index of 5 and a recent h-index of 5 (since 2020), a distinguished researcher at Banaras Hindu University, specializes in the field of Boundary layer flow, Newtonian and non- Newtonian fluid, Heat and mass transfer, Nanofluid.

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

Squeezing motion of radiative magnetized ternary hybrid nanofluid containing graphene-graphene oxide-silver nanocomposite in water base fluid placed between two parallel plates

Potential impacts of Cattaneo–Christov model of heat flux on the flow of Carreau–Yasuda fluid with mixed convection over a vertical stationary flat plate

Thermosolutal Marangoni convection on a permeable flat surface with aligned magnetic field and thermophoretic effect: an OHAM solution

Insight into the relationship between non-linear mixed convection and thermal radiation: The case of Newtonian fluid flow due to non-linear stretching

Unsteady axisymmetric flow of nanofluid on nonlinearly expanding surface with variable fluid properties

Comparative study of two non-Newtonian fluids with bioconvective induced MHD flow in presence of multiple slips, heat source/sink and nonlinear thermal radiation

MHD boundary layer flow of couple-stress fluid over a bidirectional moving surface with non-Fourier heat flux

Effect of convective boundary condition on unsteady flow of CNT-H2O nanofluid towards a stagnation-point on a shrinking/expanding flat sheet

Amit Kumar Pandey Information

University

Position

Department of Mathematics Institute of Science

Citations(all)

77

Citations(since 2020)

77

Cited By

0

hIndex(all)

5

hIndex(since 2020)

5

i10Index(all)

3

i10Index(since 2020)

3

Email

University Profile Page

Google Scholar

Amit Kumar Pandey Skills & Research Interests

Boundary layer flow

Newtonian and non- Newtonian fluid

Heat and mass transfer

Nanofluid

Top articles of Amit Kumar Pandey

Squeezing motion of radiative magnetized ternary hybrid nanofluid containing graphene-graphene oxide-silver nanocomposite in water base fluid placed between two parallel plates

Results in Engineering

2023/9/1

Krishnendu Bhattacharyya
Krishnendu Bhattacharyya

H-Index: 28

Amit Kumar Pandey
Amit Kumar Pandey

H-Index: 0

Potential impacts of Cattaneo–Christov model of heat flux on the flow of Carreau–Yasuda fluid with mixed convection over a vertical stationary flat plate

Forces in Mechanics

2023/5/1

Thermosolutal Marangoni convection on a permeable flat surface with aligned magnetic field and thermophoretic effect: an OHAM solution

Waves in Random and Complex Media

2023/3/10

Insight into the relationship between non-linear mixed convection and thermal radiation: The case of Newtonian fluid flow due to non-linear stretching

Propulsion and Power Research

2023/3/1

Unsteady axisymmetric flow of nanofluid on nonlinearly expanding surface with variable fluid properties

JCIS Open

2022/12/1

Krishnendu Bhattacharyya
Krishnendu Bhattacharyya

H-Index: 28

Amit Kumar Pandey
Amit Kumar Pandey

H-Index: 0

Comparative study of two non-Newtonian fluids with bioconvective induced MHD flow in presence of multiple slips, heat source/sink and nonlinear thermal radiation

Chemical Engineering Journal Advances

2022/11/15

Krishnendu Bhattacharyya
Krishnendu Bhattacharyya

H-Index: 28

Amit Kumar Pandey
Amit Kumar Pandey

H-Index: 0

MHD boundary layer flow of couple-stress fluid over a bidirectional moving surface with non-Fourier heat flux

Journal of Interdisciplinary Mathematics

2022/8/18

Effect of convective boundary condition on unsteady flow of CNT-H2O nanofluid towards a stagnation-point on a shrinking/expanding flat sheet

Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering

2022/6

Impact of metal oxide nanoparticles on unsteady stagnation point flow of the hybrid base fluid along a flat surface

Pramana

2021/3

See List of Professors in Amit Kumar Pandey University(Banaras Hindu University)

Co-Authors

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