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Structures

The evolution of traditional structural materials and design approaches into modern, innovative methods (e.g., AI applications, modular structures, sustainability, and real-time hybrid simulations) reflects the shift from conventional to cutting-edge practices in structural engineering.

Structure Ehab_El-Salakawy.jpg
Structure Ahmed_Elshaer.jpg

Co-Chairs: Ehab El-Salakawy & Ahmed Elshaer

Topics

  1. Structural Design and Analysis - Reinforced Concrete, Masonry, Steel, Aluminum, and Timber Structures

  2. Structural Dynamics and Responses to Extreme Events - Earthquakes, Wind, Fire, Impact and Collision, and Other Dynamic Loads

  3. Structural Performance of Sustainable and Smart Materials - Fibre Reinforced Polymers (FRP) Structures, Shape Memory Alloys

  4. Innovative Structural Systems - Modular Structures, Underground Structures, Tensegrity Structures

  5. Structural Optimization and Reliability - Structural Health Monitoring, Control, Reliability Analysis, and Risk Assessment

  6. Retrofitting and Rehabilitation of Existing Structures - Bridges, Masonry, and Heritage Structures

  7. Computational Methods in Structural Engineering – Finite Element Analysis Advanced Numerical Techniques, Computational Mechanics, and Optimization

  8. Design Codes, Standards, and Provisions

  9. Innovative Experimental Techniques - Structural Testing, Hybrid Simulation, and Control

  10. Emerging Applications - AI-driven Applications, Real-Time Simulations, and New Technologies

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