Dr. Meharu Fentahun Endalew | Best Researcher Award
Beijing Institute of Mathematical Sciences and Applications (BIMSA) | China
Mehari Fentahun Endalew is a researcher affiliated with Debre Tabor University, Ethiopia, and the Beijing Institute of Mathematical Sciences and Applications (BIMSA), with a verified institutional email at dtu.edu.et. His academic background and professional experience are centered on applied mathematics and mathematical modeling, with a strong emphasis on fluid mechanics. His research focuses on hydromagnetic (MHD) flows, Casson and second-grade fluids, nanofluids, porous media, heat and mass transfer, dual-phase-lag heat transfer models, fractional calculus, and convection phenomena. Endalew has authored 19 peer-reviewed documents that have received 237 citations across 149 citing documents, resulting in an h-index of 9. His scholarly output includes publications in journals such as Boundary Value Problems, Heat Transfer,Asian Research, Scientific Reports, International Journal of Fluid Mechanics Research, Journal of Applied and Computational Mechanics, Engineering Reports, Fractal and Fractional, and Partial Differential Equations in Applied Mathematics. His work demonstrates sustained contributions to analytical, numerical, and temporal analyses of complex transport phenomena, including melting heat transfer, radiative effects, magnetic field inclination, chemical reactions, and slip conditions in porous and microchannel flows. Through interdisciplinary mathematical modeling, he continues to advance the theoretical understanding of fluid flow and heat and mass transfer processes.
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Featured Publications
Effects of melting process on the hydromagnetic wedge flow of a Casson nanofluid in a porous medium
– Boundary Value Problems, 2019
Thermal radiation and inclined magnetic field effects on MHD flow past a linearly accelerated inclined plate in a porous medium
– Heat Transfer—Asian Research, 2019
Study of MHD second grade flow through a porous microchannel under the dual-phase-lag heat and mass transfer model
– Journal of Applied and Computational Mechanics, 2019
Temporal analysis of dual phase-lag double-diffusive MHD flow within a porous microchannel with chemical reaction
– Heat Transfer—Asian Research, 2019