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Civil engineering structure
Civil engineering structure









This course provides an introduction to the design of reinforced concrete structures. Students may take courses in structural engineering and its many related research areas as part of several different academic programs here at the University of Toronto. The main laboratory facility spans the basements of the Sandford Fleming and the Galbraith building and includes numerous ancillary facilities such as a concrete mixing laboratory, machine shop, welding bay and woodworking area.Ĭanada Research Chair in Seismic Resilience of Infrastructureīahen/Tanenbaum Professor of Civil Engineering The Structural Testing Laboratory in the Department of Civil Engineering is among the top few testing facilities in North America and has received numerous awards for the quality of research performed. UT-SIM: University of Toronto Simulation Framework.Structural Dynamics & Earthquake Engineering.

civil engineering structure

Projects geared towards new construction involve the development of design procedures and design provisions for use in practice. A new program has also been implemented on seismic resistance of timber structures. The examined techniques include external prestressing, steel bracing, and the use of fiber-reinforced polymer (FRP) sheets.Īnother area of research concentration involves the investigation of seismic performance of normal‐strength and high‐strength concrete structures reinforced with FRP bars, shape memory alloys, steel and FRP grids, as well as stay‐in‐place FRP formwork. The main thrust of current research is on the development of innovative seismic retrofit methodologies for concrete columns, structural walls, masonry infill panels, and reinforced concrete frame systems. Analytical research includes dynamic inelastic response history analysis of structures and development of mathematical models for hysteretic behaviour of structural elements. Experimental research includes tests of large-scale and full-size building and bridge components in the Structures Laboratory under simulated seismic loading. The University of Ottawa has a strong research program on earthquake engineering that involves experimental and analytical research, as well as reconnaissance missions and field investigations after major earthquakes.

CIVIL ENGINEERING STRUCTURE SOFTWARE

Analytical research is also being pursued in parallel, including computer software development for blast-load analysis.

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The short-term objectives include the development of design and retrofit techniques for: structural and non-structural components of building structures transportation systems, including bridges water distribution and treatment facilities hydraulic structures, dams, and power generation facilities and industrial plants and telecommunication towers. The long-term objective of the research effort is to develop blast-resistant design and mitigation strategies that can be adopted in the engineering practice. The laboratory is equipped with a unique shock tube, suitable for testing large-scale structural and non-structural elements under blast shock waves. The Department of Civil Engineering established the Blast Research Laboratory in 2008, with a strong research program on blast-induced loading on infrastructure. While considerable classified research has been conducted for the protection of physical infrastructure against military bomb attacks, limited information is available for blast risk mitigation of civilian infrastructure. Recent bomb attacks on civilian facilities have heightened awareness of blast risk to buildings, bridges, dams, transportation systems, and communication lifelines.









Civil engineering structure