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Lecture
Seismic Assessment: SIA 269/8
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Related lectures (32)
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Introduces the Capacity Spectrum Method for seismic analysis and retrofit strategies.
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Explores the principles of conceptual seismic design for new buildings, emphasizing simplicity, compactness, and structural integrity.
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Explores machine learning applications in earthquake engineering, covering ground shaking analysis, experimental approaches, and collapse prediction projects.
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Explores failure modes of masonry structures under earthquake loading and presents seismic engineering case studies.
Seismic Engineering Fundamentals
Introduces seismic engineering fundamentals, covering elastic response spectra, SDOF systems, and soil impact.
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Discusses seismic assessment, compliance factors, risk reduction, and retrofitting measures.
Box Behaviour: Structural Features of URM Buildings
Discusses the importance of box behavior and key structural features in seismic response.
Displacement-based Evaluation: N2 Method
Introduces the N2 method for evaluating structures during earthquakes and covers seismic demand, safety factors, and response spectra.
Stone Masonry Retrofit Techniques
Explores retrofit techniques for historic stone and brick masonry walls.
Plastic hinge method
Explains the plastic hinge method for estimating inelastic deformation capacity in structural elements, focusing on flexural deformations and providing good approximations.
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Explores seismic assessment of masonry structures, focusing on out-of-plane failure of URM walls and its impact on earthquake-prone regions.
Seismic Risk: Overview and Calculation Models
Explores seismic risk components, exposure assessment, vulnerability functions, and calculation models for risk assessment.
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