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    Meet the Assistant Professor - III

    Himanshu Upreti

    Assistant Professor - III,
    School of Engineering & Technology

    Himanshu Upreti

    Dr. Himanshu Upreti is an assistant professor in the School of Engineering and Technology at BML Munjal University, Gurugram, Haryana, India. He earned his Ph.D. in Mathematics in February 2021 from Govind Ballabh Pant University of Agriculture and Technology, Pantnagar, Uttarakhand, India. His research expertise lies in computational fluid dynamics, mathematical modelling, and numerical and analytical methods. He has published over 50 research articles in reputed international journals and has been recognized on Stanford University’s World’s Top 2% Scientists list for three consecutive years: 2023, 2024, and 2025. Wiley acknowledged two of his publications as the most cited articles for 2021-2022. He is a member of prestigious professional organizations, such as the Indian Society of Theoretical and Applied Mechanics (ISTAM), American Society of Thermal and Fluids Engineers (ASTFE) and the National Society for Fluid Mechanics and Fluid Power (NSFMFP). An active contributor to the academic community, he serves as a reviewer for several international journals and conferences. His Google Scholar metrics, with an h-index of 29, 2364 citations, and i10-index of 49, reflect the impact of his research.

    • Graduation In: B.Sc. (Physics, Chemistry, Mathematics)
    • Graduation From: DSB Campus, Kumaun University, Nainital
    • Graduation Year: 2015
    • Post Graduation In: M.Sc. (Mathematics)
    • Post Graduation From: Govind Ballabh Pant University of Agriculture & Technology, Pantnagar
    • Post Graduation Year: 2017
    • Doctorate In: Mathematics
    • Doctorate From: Govind Ballabh Pant University of Agriculture & Technology, Pantnagar
    • Doctorate Year: 2021
    From - To (Year) Designation & Organization Core Competency Additional Exp. Details
    23 November 2020-14 July 2023 Assistant Professor, Graphic Era Hill University
    • Computational Fluid Dynamics
    • Transport Phenomena
    • Non-Newtonian Flow Dynamics
    • Porous Media Flows
    • Asymptotic and Numerical Methods in Fluid Dynamics
    • Upreti, H., Pandey, A. K., Pandey, A., & Bartwal, P. (2026). Emphasize the hybrid ANFIS–PSO and ANFIS-GA-based prediction for Casson fluid flow with Cattaneo–Christov heat flux between co-axial rotating disks. International Journal of Hydrogen Energy, 232, 154982.
    • Upreti, H., & Bartwal, P. (2026). Mapping the Evolution of Nanofluid-Based Parabolic Trough Solar Collector Research: Insights from Bibliometric Analysis. Results in Engineering, 109896.
    • Upreti, H., Pandey, A. K., Pandey, A., & Bartwal, P. (2025). A comparative analysis of thermal and pressure distribution in rotating flows of von Karman and Bodewadt using multivariate regression models: A case of machine learning techniques. International Communications in Heat and Mass Transfer, 166, 109118.
    • Upreti, H., Pandey, A. K., & Uddin, Z. (2025). Impact of operational and geometrical parameters on free convective flow of magnetized nanoencapsulated phase change materials nanofluid over a wedge. The European Physical Journal Plus, 140(5), 385.
    • Upreti, H., Prakash, J., Usman, Pandey, A. K., & Tripathi, D. (2024). Thermal analysis of 3D Darcy–Forchheimer flow of SWCNT–MWCNT/sodium alginate on Riga plate. Journal of Thermal Analysis and Calorimetry, 149(9), 3891-3911.
    • Upreti, H., Pandey, A. K., Gupta, T., & Upadhyay, S. (2023). Exploring the nanoparticle’s shape effect on boundary layer flow of hybrid nanofluid over a thin needle with quadratic Boussinesq approximation: Legendre wavelet approach. Journal of Thermal Analysis and Calorimetry, 1-18.
    • Upreti, H., Pandey, A. K., Uddin, Z., & Kumar, M. (2022). Thermophoresis and Brownian motion effects on 3D flow of Casson nanofluid consisting microorganisms over a Riga plate using PSO: A numerical study. Chinese Journal of Physics, 78, 234-270.
    • Upreti, H., Pandey, A. K., & Kumar, M. (2020). Thermophoresis and suction/injection roles on free convective MHD flow of Ag–kerosene oil nanofluid. Journal of Computational Design and Engineering, 7(3), 386-396.
    • Upreti, H., Pandey, A. K., Kumar, M., & Makinde, O. D. (2020). Ohmic heating and non-uniform heat source/sink roles on 3D Darcy–Forchheimer flow of CNTs nanofluids over a stretching surface. Arabian Journal for Science and Engineering, 45, 7705-7717.
    • Upreti, H., Pandey, A. K., & Kumar, M. (2018). MHD flow of Ag-water nanofluid over a flat porous plate with viscous-Ohmic dissipation, suction/injection and heat generation/absorption. Alexandria engineering journal, 57(3), 1839-1847.
    • Indian Society of Theoretical and Applied Mechanics (ISTAM)
    • American Society of Thermal and Fluids Engineers (ASTFE)
    • National Society for Fluid Mechanics and Fluid Power (NSFMFP)
    • Awasthi, Mukesh Kumar, Pandey, Alok Kumar, Upreti, Himanshu and Davim, J. Paulo. Fluid Flow and Heat Transfer Modeling: Computational Dynamics, Numerical Modelling, Flow Simulation, De Gruyter, 2026.
    • Pandey, A. K., Upreti, H., Makinde, O. D., & Chamkha, A. J. (Eds.). (2025). Applications of Hybrid Nanofluids in Science and Engineering. CRC Press.
    • Calculus For Engineers
    • Probability and Statistics
    • Linear Algebra and Differential Equations
    • Discrete Mathematics
    • Ordinary Differential Equations