
Explore the concept of structural design and the role of codes and standards in steel and concrete. Examine fatigue, ultimate and limit state design, and settlement effects for structural reliability.
Investigate fatigue and thermal stresses in structures, linking stress ranges and cycles to fatigue life while examining heat-affected zones, residual stresses, stress concentrations, and expansion joints.
Analyze how steel and concrete behave under load, from elastic limits to plastic failure, and examine design theories, load factors, safety factors, and reliability concepts for durable structures.
Apply design theories to assess dead loads, self weight, life-cycle events, and material behavior from elastic to plastic, enabling reliable and durable structures.
Explore nonlinear and pushover analysis for structural systems, detailing hinge behavior, redundancy, and static determinacy, and guide using software to perform displacement-controlled pushover with nonlinear hinges.
At the end of this course the attendees will know the differences between American, British and European codes and standards for concrete and steel structure design. The course presents the factors that is applied to the load and the reduction factors in ACI, AISC, ASCE and partial safety factors as per BS and EC. The student will understand the main concept and difference between LRFD, WSD and ASD by applying the methods of structure reliability.
This course illustrates the structure reliability concept. The structure redundancy and the plasticity methods will be presented in addition to the nonlinear, collapse and the pushover analysis with practical for most common software. In addition to that present the meaning of RSR and how it can be used to evaluate the aging structures.
The participant will know
How to do fatigue and thermal analysis for the building.
Understand the concept of codes and standard which facilitate the complicated issues in design, construction, QC and maintenance.
Understand the structure redundancy and how it can withstand more load rather that the design load.
How to do the nonlinear analysis and the pushover analysis and the definition of RSR and how can calculate it. The differences between structure systems
How to choose the best one in the conceptual phase from reliability point of view.
This new technique is use also in evaluating and assessment an existing structure or the new design based on "Performance based design"