Structural Modelling: Behavior and Modelling of Different Lateral Load Structural Systems
Webinaire
/
le 16 septembre 2024
/
Code : 0911-WEB24
- APERÇU
- FORMATEUR
APERÇU
After participating in this course, you will be able to:
- Recognize different types of structural systems used to provide lateral resistance for concrete buildings
- Identify suitable lateral load structural system for each building
- Understand the behaviour of different lateral load structural systems
- Understand the finite element modelling of various structural components
Description:
This webinar introduces the behaviour of different lateral load structural resisting systems under lateral loads. This webinar also discusses the different methods to develop finite element models that accurately simulate the behaviour of additional lateral load structural systems.
Sophisticated three-dimensional modelling, which truly simulates different types of buildings, requires engineers to understand the complex behaviour of different lateral load structural systems and structural modelling using basic knowledge of the Finite Element Method.
This webinar series provides an opportunity to learn the principles and techniques of structural modelling of different types of concrete structures under lateral loads such as wind and seismic. The concepts and theories are explained thoroughly with conceptual examples, with no full numerical example due to time restraints.
Course Outline :
- Different types of structural systems are used to provide lateral resistance of different concrete structures
- Analysis and modelling of frame structures under lateral loads
- Analysis and modelling of shearwall structures considering torsional effects
- Analysis and modelling of coupled shearwall buildings
- Behaviour and modelling of wall-frame buildings
Who Should Attend:
- Structural Engineers
- Design Engineers
- Engineering Consultants
- Project Engineers
- Contractors
- City Engineers
FORMATEUR

Khaled is a Full Professor of Structural Engineering at Concordia University in Montreal, Quebec, Canada.
He received PhD from McMaster University and his MASc and BSc from Ain Shams University in Egypt. He has over 30 years of research, teaching, and industrial experience in the design of reinforced concrete and reinforced masonry structures, earthquake engineering and structural dynamics, rehabilitation of facilities, and applications of fibre-reinforced polymer composite materials in structures. He received the Teaching Excellence award in the Faculty of Engineering and Computer Science at Concordia University. He is a licenced professional engineer in Quebec and Ontario.
He is actively contributing to the Canadian and American codes and design standards in the design of concrete, masonry, and FRP structures.
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