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WIZAPE
Apprentice Mode
10 Modules / ~100 pages
Wizard Mode
~25 Modules / ~400 pages

Wind and Earthquake Resistant Design
( 25 Modules )

Module #1
Introduction to Wind and Earthquake Resistant Design
Overview of the importance of wind and earthquake resistant design, course objectives, and expectations
Module #2
Wind Loads and Effects
Understanding wind loads, wind patterns, and their effects on structures
Module #3
Earthquake Loads and Effects
Understanding earthquake loads, seismic waves, and their effects on structures
Module #4
Design Codes and Standards
Overview of relevant design codes and standards for wind and earthquake resistant design
Module #5
Structural Systems for Wind Resistance
Designing structural systems to resist wind loads, including frames, trusses, and walls
Module #6
Structural Systems for Earthquake Resistance
Designing structural systems to resist earthquake loads, including moment-resisting frames and braced frames
Module #7
Foundation Design for Wind and Earthquakes
Designing foundations to resist wind and earthquake loads, including shallow and deep foundations
Module #8
Wind Load Calculations
Calculating wind loads using the ASCE 7 and IBC standards
Module #9
Seismic Load Calculations
Calculating seismic loads using the ASCE 7 and IBC standards
Module #10
Designing for Wind-Borne Debris
Designing structures to resist wind-borne debris, including impact-resistant design
Module #11
Designing for Soil Liquefaction
Designing structures to resist soil liquefaction, including foundation design and soil improvement
Module #12
Designing for Tsunamis
Designing coastal structures to resist tsunami loads, including breakwater design
Module #13
Wind Tunnel Testing
Overview of wind tunnel testing, applications, and limitations
Module #14
Seismic Isolation and Damping
Designing structures with seismic isolation and damping systems to reduce earthquake damage
Module #15
Case Studies in Wind Resistant Design
In-depth analysis of wind-resistant design projects, including successes and challenges
Module #16
Case Studies in Earthquake Resistant Design
In-depth analysis of earthquake-resistant design projects, including successes and challenges
Module #17
Building Information Modeling (BIM) for Wind and Earthquake Design
Using BIM to streamline wind and earthquake resistant design, including software and workflow
Module #18
Sustainability and Resilience in Wind and Earthquake Design
Designing structures for sustainability and resilience, including green building and community resilience
Module #19
Code Requirements for Wind-Resistant Design
In-depth review of wind-resistant design requirements in the IBC and ASCE 7
Module #20
Code Requirements for Earthquake-Resistant Design
In-depth review of earthquake-resistant design requirements in the IBC and ASCE 7
Module #21
Wind and Earthquake Design for Special Structures
Designing special structures, including bridges, dams, and tall buildings, for wind and earthquake resistance
Module #22
Risk Assessment and Mitigation Strategies
Assessing and mitigating risk in wind and earthquake-prone areas, including probabilistic analysis
Module #23
Forensic Engineering and Failure Analysis
Analyzing wind and earthquake-related failures, including lessons learned and best practices
Module #24
Computational Tools for Wind and Earthquake Design
Using software and computational tools for wind and earthquake resistant design, including FEM and CFD
Module #25
Course Wrap-Up & Conclusion
Planning next steps in Wind and Earthquake Resistant Design career


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