Event code: 77090
This course is aimed at providing civil and structural engineers a good understanding of the general rules, main features and changes contained in Eurocode 3 and the accompanying Singapore National Annexes. Reference will be made to the accompanying codes EC0 (Basis of Structural Design) and EC1 (Actions on Structures). The course will cover the basis of structural component and frame design, structural loading, material properties, design at the ultimate limit state and the serviceability limit state. Practical examples with direct reference to the code clauses will be used to illustrate the application of the code requirements. Case studies are provided to illustrate clearly the theory of structural stability and design and how they can be applied to avoid structural collapse.
After attending the course, participants will be able to:
1. Enhance their understanding of Eurocode provisions for the design of steel structures;
2. Apply design principles and standards in accordance with Eurocode 3 and Singapore National Annexes in the design of steel buildings;
3. Design structural steel frames and components in accordance with Eurocode 3 design principles & methodology;
4. Avoid common mistakes in design with lessons learned from case studies and collapse investigations.
ER PROF RICHARD LIEW - BEng (Hons), MEng, PhD, CEng, PEng, ACPE, StEr
Professor of the National University of Singapore, Department of Civil and Environmental Engineering.
Prof Richard Liew is a Chartered Engineer and Professional Engineer. He joined NUS in 1986 where he lectured, conducted research and provided short courses and consultancy services to the industry especially in the field of steel and composite structural engineering. He has been awarded with multiple teaching excellence awards by the Faculty of Engineering over the years. He is world-renowned as an expert of advanced analysis and the application of theory of stability and plasticity in structural and offshore engineering with emphasis on robustness and hazard assessments including the effects due to fire, blast and impact loads. He has authored and co-authored five books and published over 300 technical papers. He is a member of the Institution of Structural Engineers (UK) and the Institution of Engineers, Singapore, and the Honorary Fellow of Hong Kong Institute of Steel Construction and Singapore Structural Steel Society. He has served in numerous international and local technical committees relating to material and building standards. He is currently a member of SPRING, Singapore’s Technical Committee on Building Structure and wherein he also serves as a Convenor on the adoption of Eurocode 3 and Eurocode 4 in Singapore and chairing several workgroups for Eurocodes 3 and 4.
DR PANG SZE DAI - Assistant Professor of the National University of Singapore, Department of Civil and Environmental Engineering
Dr Pang Sze Dai joined NUS in 2006 where he lectured in courses on structural steel design and system, structural stability and dynamics and has been awarded with multiple teaching excellence awards by the university and the faculty over the years. He has provided regular short courses in Singapore and Malaysia on design of buildings against seismic actions using the UBC, IBC and Eurocode 8 and provided consultancy services to the industry in the fields of structural stability and steel design. He is active in the research of composites for structural and offshore applications and in advanced numerical analysis of complex problems. He is a member of the Institution of Engineers, Singapore and an observer in the Singapore Structural Steel Society council.
• Structural Practicing Engineers
• Steel Structures’ Designers
• Consulting Engineers
• Resident Engineers
• Resident Technical Officers
• Specification Writers
• Steel Fabricators
10th Run: 13 & 14 Jun 2018
Time: 9.00am to 5.30pm
Venue: BCA Academy, 200 Braddell Road, S(579700)
Fee (Inclusive of GST): S$770.00
Course materials, lunches and refreshments will be provided
IES- ACES (RE/RTO): Pending (Structural)
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200 Braddell Rd S579700 • Fax: 6258 0558 • Email: email@example.com • www.bcaa.edu.sg