M. Zubair

ORCID: 0000-0002-6433-4021
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About
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Research Areas
  • Nanofluid Flow and Heat Transfer
  • Fluid Dynamics and Turbulent Flows
  • Heat Transfer Mechanisms
  • Advanced Materials and Semiconductor Technologies
  • Radiative Heat Transfer Studies
  • Rheology and Fluid Dynamics Studies
  • Thermodynamic and Structural Properties of Metals and Alloys
  • Solar Thermal and Photovoltaic Systems
  • Thermal and Kinetic Analysis

Shandong University
2024

Shandong Transportation Research Institute
2024

Mohi-ud-Din Islamic University
2022-2023

This research captures nonlinear thermo-solutal buoyancy (i.e., mixed convection) impact in nanofluid flow based on magnetized Casson model. The generalized porosity concept Darcy–Forchheimer relationship) is employed by considering incompressible liquid that saturates the porous space. Effects of thermophoresis, Robin conditions, stratifications and Brownian diffusion are accounted. Consideration transpiration phenomenon suction/injection aspects. Fluid mechanics basic laws depleted to...

10.1142/s0217979225500080 article EN International Journal of Modern Physics B 2024-02-29

Due to recent advancements in technologies and nanoscience, research focused on nanofluid because of its extensive use many industrial as well manufacturing processes. Nanotechnology is widely utilized photovoltaic devices, mini-computers, bio-medical apparatus, electronic instruments, cooling heating metallic plates, etc. In view numerous applications, the basic aim this work explore impact ferromagnetic nanomaterial 2-D Eyring–Powell fluid flow. Characteristics viscous dissipation Brownian...

10.1142/s0217979224501157 article EN International Journal of Modern Physics B 2023-04-27

This research elaborates Darcy–Forchheimer magnetized flow based on non-Newtonian liquid induced by elongating surface. Rheological expressions of Casson are utilized for mathematical analysis. Thermal stratification along with velocity and thermal slip aspects is considered. Heat transfer describes radiation heat source/sink. The complex featuring partial differential systems rendered to ordinary implementing boundary-layer approach. Numerical results achieved through bvp4c scheme....

10.1142/s0217979223500741 article EN International Journal of Modern Physics B 2022-10-07
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