
معرفی
Shadi Mohamed is an Associate Professor at Heriot-Watt University's School of Energy, Geoscience, Infrastructure and Society, specifically within the Institute for Infrastructure & Environment. His research focuses on computational mechanics with applications spanning acoustic wave modeling, traffic flow simulation, and structural dynamics. He maintains an active research profile with over 100 publications and currently accepts PhD students for projects in computational mechanics, traffic modeling, and acoustic waves.
His research interests center on advanced numerical methods for engineering problems, particularly finite element analysis for transient diffusion, wave propagation, and structural dynamics. Key focus areas include enriched finite element methods, partition of unity techniques, and machine learning integration for structural health monitoring and inverse problems. His work demonstrates strong alignment with UN Sustainable Development Goals through sustainable infrastructure development and environmental protection.
Analysis of his recent publications reveals a clear trajectory toward hybrid computational approaches combining traditional numerical methods with machine learning, particularly for structural dynamics, fatigue analysis, and wave propagation problems. His work increasingly integrates convolutional neural networks for vibration analysis and employs isogeometric analysis for thermal and diffusion problems in composite materials.
- Best Post-graduate Research (2008)
- Japan Society for the Promotion of Science Invitational Fellowship (2019)
Dr. Mohamed actively supervises PhD research and collaborates internationally, with recent work spanning vibration-induced fatigue assessment, dynamic load identification, and thermal analysis of composite materials. His research is supported by prestigious fellowships and demonstrates strong industry relevance, particularly in structural integrity assessment and sustainable infrastructure development. He is affiliated with the Institute for Infrastructure & Environment, which focuses on sustainable engineering solutions for global challenges.



