<p>1. Introduction<br>2. Seismic Hazard Assessment<br> 2.1. Understanding earthquake ground motions<br> 2.2. Seismic zoning and site-specific considerations<br>3. Principles of Earthquake-Resistant Design<br> 3.1. Ductility and energy dissipation in structural systems<br> 3.2. Seismic isolation and base isolation systems<br>4. Structural Analysis and Retrofitting Techniques<br> 4.1. Performance-based design approaches<br> 4.2. Strengthening existing buildings for seismic resilience<br>5. Integration of Seismic Design in Building Codes and Standards<br> 5.1. Seismic provisions in international building codes<br> 5.2. Local regulations and enforcement of seismic requirements<br></p>
This project aims to investigate the principles and strategies for designing earthquake-resistant buildings. Earthquakes pose significant risks to buildings and infrastructure, and effective seismic design is essential for ensuring the safety and resilience of structures in seismically active regions. This research will explore seismic hazard assessment, structural analysis and retrofitting techniques, as well as the integration of earthquake-resistant design principles in building codes and standards.
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