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Lecture
Seismic Capacity Assessment
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Related lectures (32)
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Capacity Spectrum Method
Introduces the Capacity Spectrum Method for seismic analysis and retrofit strategies.
Plastic Hinge Method: Analysis and Design
Explores the plastic hinge method for inelastic deformation estimation and discusses the challenges of force-based design.
Seismic design: Conventional vs. Capacity design
Explores seismic design principles, including conventional and capacity design of structures, failure modes, and plastic mechanisms.
Seismic Engineering Fundamentals
Introduces seismic engineering fundamentals, covering elastic response spectra, SDOF systems, and soil impact.
Earthquake Effects: Ground Movement and Seismic Engineering
Explores earthquake effects, seismic hazards, building damage, and seismic design principles, emphasizing the importance of deformation capacity in structures.
Plastic Hinge Analysis
Explores the plastic hinge method, moment-curvature analysis, and force-displacement response construction in structures.
Response Spectrum Method
Covers the Response Spectrum Method and its combination rules, emphasizing effective modal mass and maximum absolute responses.
Relationship between R and Ductility
Delves into the relationship between R and ductility in seismic engineering, focusing on inelastic response spectra.
Seismic Engineering Fundamentals
Introduces seismic engineering fundamentals, covering failure modes, design, evaluation, and comparison of linear and nonlinear systems.
Seismic Design Methods: Response Spectrum vs Equivalent Lateral Force
Compares force-based seismic design methods: response spectrum vs equivalent lateral force, explaining peak forces and displacements estimation during earthquakes.