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Soufiene Bettaibi | Cardiovascular Pharmacology | Best Researcher Award

Assoc. Prof. Dr. Soufiene Bettaibi, International University of Rabat, UIR, Morocco

Assoc. Prof. Dr. Soufiene Bettaibi is a distinguished expert in Fluid Mechanics and Heat & Mass Transfer 🔥💧. He holds a Master’s and Ph.D. in these fields, earned through collaborations with the Faculty of Science of Tunis, CETHIL (INSA Lyon), and IAC-CNR (Rome) 🏛️. Currently, he serves as an Associate Professor at the Higher School of Energy Engineering, International University of Rabat (UIR), Morocco 🇲🇦. His research focuses on nanofluids, biomechanics, and energy systems ⚙️🧪, with numerous ISI-indexed publications 📚 and active participation in international conferences & projects 🌍🔍

Publication Profile

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Academic Background

Assoc. Prof. Dr. Soufiene Bettaibi 🎓 is a distinguished expert in Fluid Mechanics and Heat and Mass Transfer. He earned his Master’s and Ph.D. degrees through collaborative research with prestigious institutions, including the Faculty of Science of Tunis, CETHIL (INSA Lyon) 🇫🇷, and IAC-CNR (Rome) 🇮🇹. His strong academic foundation and extensive research contributions have positioned him as a key figure in advancing scientific knowledge in these specialized fields. Dr. Bettaibi’s expertise continues to drive innovation, shaping the future of fluid dynamics and thermal sciences with groundbreaking research and interdisciplinary collaborations. 🔬🔥

Research Impact

Assoc. Prof. Dr. Soufiene Bettaibi 🎓 is a dedicated researcher and educator at the Higher School of Energy Engineering, International University of Rabat (UIR) 🇲🇦. His expertise in Fluid Mechanics and Heat and Mass Transfer has led to groundbreaking research that enhances scientific understanding in these critical fields. Through his work, Dr. Bettaibi has made significant contributions to academia, fostering innovation and advancing knowledge in energy engineering. His research not only enriches the scientific community but also plays a crucial role in developing sustainable and efficient thermal systems for future applications. 🔬⚙️🔥

Conference Engagement

Assoc. Prof. Dr. Soufiene Bettaibi 📚 has made significant contributions to the scientific community through his numerous ISI-indexed publications, reflecting the depth and rigor of his research. In addition to his scholarly work, he actively engages in national and international conferences and workshops 🌍🎤, where he presents his findings and collaborates with experts worldwide. His participation in these events strengthens global scientific discourse, fosters innovation, and enhances interdisciplinary research in Fluid Mechanics and Heat and Mass Transfer. Dr. Bettaibi’s commitment to knowledge dissemination continues to inspire and drive advancements in his field. 🔬📖

Research Focus

Assoc. Prof. Dr. Soufiene Bettaibi focuses on computational fluid dynamics (CFD) 🌊, lattice Boltzmann method (LBM) 🧮, heat and mass transfer 🔥💨, and magnetohydrodynamics (MHD) 🧲. His research explores mixed convection flows in cavities 🏠, blood flow modeling in arteries 🩸, and multiphysics simulations 📊. He applies finite difference methods 📐 and mesoscopic modeling 🌀 to solve complex engineering and biomedical problems. His studies have significant applications in biomedical engineering 🏥, energy systems ⚡, and thermal management ❄️. Through his advanced numerical simulations, Dr. Bettaibi contributes to fluid dynamics innovation 🚀 and interdisciplinary scientific advancements 🔬.

Publication Top Notes

Hybrid LBM-MRT model coupled with finite difference method for double-diffusive mixed convection in rectangular enclosure with insulated moving lid

Hybrid lattice Boltzmann finite difference simulation of mixed convection flows in a lid-driven square cavity

Lattice Boltzmann simulation of mixed convection heat transfer in a driven cavity with non-uniform heating of the bottom wall

Magnetohydrodynamic blood flow study in stenotic coronary artery using lattice Boltzmann method

Numerical study of thermal diffusion and diffusion thermo effects in a differentially heated and salted driven cavity using MRT-lattice Boltzmann finite difference model

Numerical study of pulsatile thermal magnetohydrodynamic blood flow in an artery with aneurysm using lattice Boltzmann method (LBM)

MRT-lattice Boltzmann hybrid model for the double diffusive mixed convection with thermodiffusion effect

Double diffusive mixed convection with thermodiffusion effect in a driven cavity by lattice Boltzmann method

Double population lattice Boltzmann model for magneto-hydrodynamic blood flow in stenotic artery

Soufiene Bettaibi | Cardiovascular Pharmacology | Best Researcher Award

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