معرفی
Jamal Naser is a Senior Lecturer in the School of Engineering at Swinburne University of Technology, where he actively contributes to research, teaching, and supervision. He holds the academic rank of Senior Lecturer and is involved in numerous research projects focusing on computational fluid dynamics (CFD), energy systems, and materials processing.
Research Interests: His primary research areas include fluid mechanics, thermal engineering, chemical engineering, and extractive metallurgy. He specializes in CFD modeling applied to hydrogen use in steelmaking, wildland fire spread, composite manufacturing, and renewable energy systems such as wind turbines. His work bridges fundamental fluid dynamics with industrial applications in clean energy and sustainable manufacturing.
The analysis of his recent publications reveals a strong trend in applying numerical modeling to environmental and industrial challenges—particularly decarbonization in steelmaking, fire safety in timber buildings, and bio-inspired wind turbine design. His research consistently employs advanced simulation tools like ANSYS Fluent and AVL FIRE, often incorporating user-defined subroutines for multiphase and reactive flows.
Scientific Contributions:
- Lead and co-author of over 190 publications, with recent work appearing in high-impact journals such as Metallurgical and Materials Transactions B, Fire, and Energies.
- Active researcher in hydrogen-based steelmaking, fire dynamics, and composite preforming, contributing to sustainable development goals related to clean energy and climate action.
Advising and Grants: Jamal Naser supervises multiple PhD and Master’s students and has secured several external research grants from organizations including CSIRO, Australian Mathematical Sciences Institute, and Lunar Resources. His grants support projects on hydrogen in steelmaking, lunar metal casting, and anaesthesia data analysis, demonstrating interdisciplinary collaboration and industry engagement.
Labs and Teams: He collaborates with researchers in multiphase flow modeling, combustion, and materials engineering, often working with teams involving G. Brooks, W.D.S. Fernando, and S.M. Hayajneh. His work integrates experimental validation with computational modeling, ensuring robust and scalable solutions.
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