Heat transfer assessment for Au-blood nanofluid flow in Darcy-Forchheimer porous medium using induced magnetic field and Cattaneo-Christov model H Upreti, P Bartwal, AK Pandey, OD Makinde Numerical Heat Transfer, Part B: Fundamentals 84 (4), 415-431, 2023 | 37 | 2023 |
Application of modified Fourier's law in a fuzzy environment to explore the tangent hyperbolic fluid flow over a non-flat stretched sheet using the LWCM approach P Bartwal, H Upreti, AK Pandey, N Joshi, BP Joshi International Communications in Heat and Mass Transfer 153, 107332, 2024 | 20 | 2024 |
Shape factor analysis in stagnation point flow of Casson nanofluid over a stretching/shrinking sheet using Cattaneo–Christov model H Upreti, SR Mishra, AK Pandey, P Bartwal Numerical Heat Transfer, Part B: Fundamentals; https://doi.org/10.1080 …, 2023 | 16 | 2023 |
Exploring the features of Von-Karman flow of tangent hyperbolic fluid over a radially stretching disk subject to heating due to porous media and viscous heating P Bartwal, H Upreti, SR Mishra, AK Pandey Modern Physics Letters B, 2023 | 13 | 2023 |
Entropy and melting heat transfer assessment of tangent hyperbolic fluid flowing over a rotating disk P Bartwal, H Upreti, AK Pandey Journal of Thermal Analysis and Calorimetry, 2024 | 8 | 2024 |
Impact of anisotropic slip on magnetized tangent hyperbolic fluid flow over a rotating disk: A legendre wavelet collocation method P Bartwal, AK Pandey, H Upreti International Communications in Heat and Mass Transfer 159, 108081, 2024 | 5 | 2024 |
Insight into the impact of melting heat transfer and MHD on stagnation point flow of tangent hyperbolic fluid over a porous rotating disk P Bartwal, H Upreti, AK Pandey Journal of Porous Media 27 (9), 73-100, 2024 | 5 | 2024 |
Heat transfer assessment of magnetized tangent hyperbolic fluid flow through porous disk using LWCM: Application in solar thermal power plant P Bartwal, H Upreti, AK Pandey Nano, 2450157, 2024 | 1 | 2024 |