Designing Temporary Structures
Fee: $1,645 / Online / May 4 - 5, 2027 / Course Code: 18-0510-ONL27
OVERVIEW
Please note, This instructor-led course has specific dates and times:
This course is held online over 2 days on the following schedule (All times in Eastern Time Zone): 9:30 am to 5:30 pm Eastern (Will include the usual breaks) <strong>NOTE:</strong> Please note that all attendees must sign a <strong>Confidentiality Agreement</strong> prior to receiving the course notes for this online offering.
By the end of this course, you will be able to:
Explain the relationship between structural design, construction methods, and the safe performance of temporary structures.
Apply load, stability, member design, and connection principles to scaffolding, formwork, shoring, falsework, and temporary support systems.
Identify common causes of failure in temporary structures, including design errors, field changes, inadequate load paths, and insufficient lateral stability.
Design and assess temporary structures using appropriate engineering judgment, project conditions, and applicable codes, standards, and regulations.
Review, erect, and inspect scaffolding, formwork, shoring, and supporting structures to help manage safety, constructability, and performance risks on construction projects.
Description
Temporary structures such as scaffolding, formwork, shoring, falsework, and temporary supports are essential to construction, but they can also pose significant risks when not properly designed, erected, modified, or inspected. Professionals involved in temporary structures at any stage may be required to make decisions about these systems amid changing site conditions, compressed schedules, and competing project demands.
Failures in temporary structures can lead to serious injury, loss of life, property damage, schedule disruption, and professional liability. Sound engineering judgment is required to understand how loads are transferred, how stability is maintained, and how design decisions in the office connect to construction practices in the field. This course examines the design and construction principles that support safe and effective temporary works, with attention to common failure mechanisms and the implications of field modifications.
Through technical instruction, examples, and guided workshops, you will develop a structured understanding of the design, erection, and inspection of scaffolding, formwork, shoring, falsework, and temporary support systems. Relevant codes, standards, and regulations will be discussed, with the understanding that the most current applicable requirements must be followed on engineering projects.
Who Should Attend
This course is designed for:
Structural engineers
Construction engineers
Municipal engineers
Design engineers
Engineers-in-training
Project engineers
Project coordinators
Construction managers
Consulting engineers
Contractors
Construction inspectors
Technical professionals involved in the design, review, erection, or inspection of temporary works
NOTE: Please note that it is a requirement for all attendees to sign a "Confidentiality Agreement" prior to receiving the course notes for this online offering.
SYLLABUS
Day 1
Course Introduction
Welcome and introductions
Learning outcomes
Assessment method
Loads on Temporary Structures
Service and factored loads
Load factors and load combinations
Dead loads
Live loads
Construction loads
Environmental loads
Beam analysis
Load and moment transfer to columns
Lateral stability
Introduction to Wood Member Design
Flexural and shear design
Axial concentric and eccentric load design
Combined axial and flexural load design
Connection design
Scaffolding and Shoring
Types of scaffolding
Scaffolding components
Potential collapse mechanisms
Scaffold design considerations
Day II
Concrete Formwork Design
Formwork Materials
Types of Forms
Bending, Shear and Deflection
FormDesign Example
Safety Issues
Causes of Formwork Failure
Estimating Concrete Formwork
Falsework Design
Falsework Risk
Falsework Accident
Falsework Design Criteria
Load Paths for Falsework Design
Support of Existing Structure
Basic Building Materials
Examples of Existing Structure Support
Workshop
Participants will work under the instructor's guidance to design formworks/supporting structures.
Questions & Answers
Questions & Answers, Feedback on Achievement of Learning Outcomes
Concluding Remarks & Final Adjournment
INSTRUCTOR
Engineering Director — Moderna Homes Builders & Contractors
Oakville, ON
Dr. Mohamed Khalil has over 20 years of experience in concrete and steel design and is the founder and director/manager of Stenvro Engineering Inc.
He previously worked as a marketing manager for aircraft and aircraft components at Pratt and Whitney Canada and Bombardier Aerospace. At Pratt and Whitney Canada, Dr. Khalil was a specialist in designing critical rotating structures under high and low cycle fatigue loading. He has also been involved in designing many projects for Ford Motor Company, MascoTech Inc., Kobelco Metal Powder of America Inc., and the American Iron and Steel Institute. His projects have included high-rise buildings, underground metro stations, education centers, education residences and steel factories.
Dr. Khalil has instructed many engineering, engineering economics and engineering management courses at educational institutes and universities. A co-author of many technical journal papers, he has delivered scientific and marketing presentations at technical symposiums worldwide. He is also a technical reviewer for international scientific journals.
Dr. Khalil obtained his M.A.Sc. and Ph.D. from the University of Waterloo and completed his Master of Business Administration at the Rotman School of Management at the University of Toronto.
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