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Dr. Atul Kumar Ray

Assistant Professor · Department of Mathematics and Computing, Madhav Institute of Technology and Science (MITS) Gwalior, Madhya Pradesh -474005, India

https://researchid.co/atulkumarray
@mitsgwalior.in
24Scopus Publications
355Google Scholar Citations
12Google Scholar h-index
13Google Scholar i10-index

Research Interests

Fluid Dynamics & Applied Mathematics, Hybrid Nano-fluid flows, Bio-fluid dynamics & Bio-Mathematics, Artificial Intelligence & Machine Learning

Biography

Dr. Atul Kumar Ray is presently working as an Assistant Professor in the department of Engineering Mathematics and Computing, Madhav Institute of Technology and Science (MITS) Gwalior, Madhya Pradesh, India. Dr. Ray has more than 7 years of teaching experience in different institutes and universities (which includes MNNIT Allahabad , GCE Keonjhar Odisha (NPIU Govt. of India, TEQIP-III), ITER, Siksha ‘O’ Anusandha Deemed to be University Bhubaneswar.) He has numerous publications in SCI/SCIE, ESCI/Web of Science and Scopus indexed Journals of highly repute. He is reviewer of many articles in international Journals (like Case study in Thermal Engineering (Elsevier), Heat and Mass Transfer (Springer), World Journal of Engineering (Emeralds Insight), Waves in Random and Complex Media (Taylor & Francis) etc. He is Topic Editor and Editorial member of Journal "Frontiers in Applied Mathematics and Statistics" and "Applied and Computational Mathematics" respectively.

Education

Dr. Atul Kumar Ray has completed his Ph. D. from Motilal Nehru National Institute of Technology (MNNIT) Allahabad, Prayagraj, Uttar Pradesh, India in the field of Fluid Dynamics with his PhD. Thesis Titled “Homotopy Simulation of Convective Flow of Non-Newtonian Fluids”. Apart from qualifying national exams like NET-JRF (Mathematical Science) and GATE (Mathematics), he was university topper in his Master degree from Mathematics and Allied Science from Jiwaji University Gwalior, Madhya Pradesh.

Recent Scopus Publications

  1. Hydro-magneto-thermal performance and irreversibility analysis of copper and aluminum oxide-based nanomaterial inside an octagonal enclosure
    International Journal of Modern Physics B, 2026
  2. Thermal performance and irreversibility analysis in hexagonal chamber filled with MgO-Ag/H2O hybrid nanomaterial: vertical vs. horizontal finned configurations
    Journal of Thermal Analysis and Calorimetry, 2026
  3. Entropy analysis and multi-physics simulation of radiative hybrid nanofluid flow in variable finned cylinder embedded in octagonal enclosure
    Journal of Thermal Analysis and Calorimetry, 2026
  4. Magneto-thermogravitational convective flow of hybrid nanomaterial within an enclosure subject to partially active side walls
    ZAMM Zeitschrift Fur Angewandte Mathematik Und Mechanik, 2025
  5. Mixed convection magnetohydrodynamic flow of hybrid nanofluid over a spinning sphere with nonlinear thermal radiation: Keller-Box approach
    Numerical Heat Transfer Part A Applications, 2025

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