Mathematics

Dr. Roopa G.S. Profile

Faculty ID : 1-4191568003

Department : Mathematics

Email : gsr@mcehassan.ac.in

Mobile : 9916031028

Qualification : M.sc.,B.Ed., Ph.D

Specialization : Fluid mechanics

Additional Responsibility : I year academic coordinator

Research Interest : Fluid Mechanics, nano fluid, boundary layer, heat transfer

Google Scholar Link : Click here

IRINS link : Click here
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S.No Year Type Publication Details
1. 2025-2026

Thermal investigation of Tiwari–Das and Xue nanofluid model on space and thermal-dependent heat source/sink over a spinning disk: A numerical study, Numerical Heat Transfer, Part A: Applications, 1-16, (2025), (SCI/Scopus/Q2)

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2. 2025-2026

Thermal transport of magnetized nanoliquid flow over lubricated surface with activation energy and heat source/sink, Numerical Heat Transfer, Part B: Fundamentals, Vol. 85(7), (2024), Pp. 922-939. (SCI/Scopus/Q2)

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3. 2025-2026

Thermal analysis of Boger nanofluid across a spinning disc, Thermal Advances, Volume 4, (2025)

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4. 2025-2026

Optimization of Blasius Rayleigh Optimization of Blasius Rayleigh Stokes flow of aggregated nanoliquid past a semi-infinite plate: An LMB optimized neural network technique, International Communications in Heat and Mass Transfer, Vol. 172, Part 2, (2026), 110335. (SCI/Scopus/Q1)

 

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5. 2025-2026

Cattaneo–Christov diffusion flux and homogeneous/heterogeneous reactions on exploration of heat transport between stretched coaxial cylinder: A Taguchi optimization technique approach , International Journal of  Thermofluids, Vol. 33, (2026), 101600. (SCI/Scopus/Q1) 

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6. 2025-2026

Optimizing the heat performance of Casson ternary nanoliquid with radiative-magnetic-chemical reactive effects using Taguchi technology, Thermal Advances, Volume 7, 100155. 

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7. 2024-2025

Madhukesh JK, Ramesh GK, Fatima  HN, Roopa GS, Shehzad SA. Influence of pollutant dispersion on nanofluid flowing across a stretched disc-cone device. Journal of Molecular Liquids. Vol. 411, (2024),   125710. (Q1)

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8. 2022-2023

J. K. Madhukesh, G. K. Ramesh, G.S. Roopa, B. C. Prasannakumara, Nehad Ali Shah  And Se-Jin Yook, “3D flow of hybrid nanomaterial through a circular cylinder: Saddle and Nodal Point Aspects”, Mathematics, Vol.10(7), (2022), Pp. 1185. (SCI/Scopus/Q2)

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9. 2022-2023

W. Jamshed, G.K. Ramesh, G.S. Roopa, K.S. Nisar, Rabia Safdar, J.K. Madhukesh, Faisal Shahzad, Siti Suzilliana Putri Mohamed Isa, B. Shankar Goud, “Mohamed R Eid, electromagnetic radiation and convective slippery stipulation influence in viscous second grade nanofluid through penetrable material”, ZAMM (Zeitschrift fur Angewandte Mathematik und Mechanik-Journal of Applied mathematics and mechanics), (2022), Pp. 1521-4001. (SCI/Scopus/Q2)

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10. 2021-2022

G.K. Ramesh, J.K. Madhukesh, B.C. Prasannakumara, G.S. Roopa, “Significance of aluminium alloys particle flow through a parallel plates with activation energy and chemical reaction”, Journal of Thermal Analysis and Calorimetry, Vol. 147, (2022), Pp. 6971-6 981, (SCI/Scopus/Q2)

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11. 2020-2021

G.K. Ramesh, S. Manjunatha, G.S. Roopa, Ali J. Chamkha, “Hybrid (ND-Co3O4/EG) nanoliquid through a permeable cylinder under homogeneous-heterogeneous reactions and slip effects”, Journal of Thermal Analysis and Calorimetry, Vol. 146, (2021), Pp. 1347-1357. (SCI/Scopus/Q2)

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12. 2019-2020

G.K. Ramesh, G.S. Roopa, Sabir Ali. Shehzad, S.U. Khan, “Interaction of Al2O3-Ag and Al2O3-Cu hybrid nanoparticles with water on convectively heated moving material”, Multidiscipline Modeling in Materials and Structures, Vol. 16(6), (2020), Pp. 1651-1667.   (SCI/Scopus/Q3)

 

Younghae Do, G.K. Ramesh, G.S. Roopa, M. Sankar, “Navier’s slip condition on time dependent Darcy-Forchheimer nanofluid using spectral relaxation method”, Journal of Central South University, Vol. 26(7), (2019), Pp. 2000-2010. (SCI/Scopus/Q1)

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13. 2017-2018

G.K.Ramesh, G.S.Roopa, B.J.Gireesha, Sabir Ali Shehzad, F.M. Abbasi, “An electromagneto-hydrodynamic flow Maxwell nanoliquid past a Riga plate: A numerical study, Journal of the Brazilian Society of Mechanical Sciences and Engineering,  Vol. 39, (2017), Pp. 4547-4554. (SCI/Scopus/Q2)

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14. 2013-2014

G.S.Roopa, B.J.Gireesha & C.S.Bagewadi, “Numerical investigation of mixed convection boundary layer flow of a dusty fluid over an vertical surface with radiation” Afrika Matematika (Springer publications), Vol. 24, (2013) Pp.487-502. (SCI/Scopus/Q2)

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15. 2012-2013

C.S.Bagewadi, B.J.Gireesha, Mahesha and G.S.Roopa, “Effect of Radiation on Hydromagnetic flow and Heat Transfer of a Dusty fluid between Two Parallel plates,” International Journal of Physical and Mathematical Sciences, Vol. 3(1), (2012) Pp.47-65.

 

B.J.Gireesha, G.S.Roopa, H.J.Lokesh and C.S.Bagewadi, “MHD Flow and Heat Transfer of a Dusty Fluid over a Stretching Sheet,” International Journal of Physical and Mathematical Sciences, Vol. 3(1), (2012) Pp.171-182. 

 

B.J.Gireesha, G.S.Roopa & C.S.Bagewadi, “Effect of viscous dissipation and heat source on flow and heat transfer of dusty fluid over unsteady stretching sheet” Applied Mathematics and Mechanics (English Edition) (Springer publications)’ Vol. 33(8), (2012). Pp.1001-1014. (SCI/Scopus/Q1)

 

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16. 2010-2011

B.J.Gireesha, G.S.Roopa and C.S.Bagewadi, “Unsteady Flow and Heat Transfer of a Dusty Fluid through a Rectangular Channel”, Mathematical Problems in Engineering (Hindawi Publishing Corporation), Vol. 2010, (2010) 17 pages. (SCI/Scopus/Q2)

 

B.J.Gireesha, G.S.Roopa and C.S.Bagewadi, “Boundary Layer Flow of an  Unsteady Dusty Fluid and Heat Transfer over a Stretching Sheet with non-uniform Heat Source/Sink,” Engineering (Scientific Research), Vol. 3(7), (2011) Pp.726-735.

 

G.S.Roopa, B.J.Gireesha and C.S.Bagewadi, “Unsteady Flow and Heat Transfer of a Dusty Fluid between Two Parallel Plates,” International Journal of Computational Science and Mathematics, Vol. 3(4), (2011) Pp. 421-433.

 

G.S.Roopa, B.J.Gireesha & C.S.Bagewadi, “Effect of viscous dissipation on MHD flow and heat transfer of a dusty fluid over an unsteady stretching sheet”, International Journal of Mathematical Archive, Vol. 2(11), (2011) Pp. 2229-2240.

 

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