Earthquake Engineering for Slopes, Retaining Walls, Underground, and Buried Structures
Fee: $1,615 / Online / Sep 27 - 28, 2027 / Course Code: 18-0901-ONL26
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)
By the end of this course, you will be able to:
- Assess seismic hazards and their implications for geotechnical, underground, and buried infrastructure.
- Apply concepts of ground motion, site response, and dynamic soil behaviour to seismic design problems.
- Evaluate seismic slope stability and retaining wall performance under earthquake loading.
- Identify seismic design considerations for tunnels, shafts, pipelines, culverts, and other buried structures.
- Apply soil–structure interaction principles to support performance-based seismic design decisions.
Description
Seismic loading can create complex demands on geotechnical systems, particularly where slopes, retaining structures, underground facilities, and buried infrastructure are exposed to ground shaking, cyclic soil behaviour, liquefaction, ground deformation, or fault movement. These conditions require professionals to understand not only the seismic hazard itself, but also how soils and structures interact under dynamic loading.
This course provides a structured introduction to geotechnical earthquake engineering for slopes, retaining walls, underground structures, and buried infrastructure. You will examine seismic hazard and ground motion fundamentals, site response, dynamic soil behaviour, liquefaction, ground response analysis, and soil–structure interaction as they apply to practical design and evaluation problems.
Through technical examples and case-based discussion, you will develop a stronger basis for assessing seismic performance, identifying vulnerabilities in existing systems, and applying earthquake-resistant design approaches. The course emphasizes practical engineering judgment, performance-based thinking, and the protection of infrastructure systems where seismic risk must be addressed as part of responsible design and asset management.
Who Should Attend
This course is designed for:
- Geotechnical engineers involved in seismic assessment, analysis, or design
- Structural engineers working with foundations, retaining structures, or infrastructure systems
- Civil engineering consultants responsible for geotechnical or infrastructure projects
- Municipal engineers and infrastructure planners in earthquake-prone regions
- Construction professionals involved in underground, buried, or earth-retaining structures
- Researchers, educators, and technical specialists seeking to strengthen their understanding of geotechnical earthquake engineering
SYLLABUS
Seismic Hazard and Ground Motion Fundamentals
- Earthquake sources and ground shaking characteristics
- Seismic hazard analysis and site response
- Ground motion parameters
Dynamic Soil Behaviour and Soil–Structure Interaction
- Soil behavious under cyclic loading
- Liquefaction and its effects on geotechnical systems
- Ground response analysis
Earthquake-Resistant Design of Slopes and Retaining Structures
- Seismic slope stability analysis methods
- Design of retaining walls under seismic loading
Underground and Buried Structures in Seismic Zones
- Seismic design of tunnels, shafts, and underground facilities
- Buried pipelines and culverts: seismic considerations
- Ground deformation and fault crossing effects
INSTRUCTOR
Adjunct Research Professor — Western University
London, ON
Dr. Meckkey El-Sharnouby is a Principal Engineer at Atlantic Industries Limited and an Adjunct Professor at the University of Western Ontario.
Dr. El-Sharnouby has been developing and designing geostructural systems for over 15 years. His expertise includes underground structures, marine terminal infrastructure, linear infrastructure, surface mining, machine foundations, geodynamic engineering, computational geomechanics and sustainability. He was recently involved in designing and constructing the largest span buried structure, which earned a Guinness World Record in the UAE.
His global expertise extends from North America, South America, and the Middle East to New Zealand. Dr. Meckkey earned his master’s and Ph.D. from Western University, authored several publications and presented at numerous international conferences. He is involved in developing MSE walls and buried bridge sections in the Canadian Highway Bridge Design Code (CSA-S6-19 and 24).
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