This course, includes the basics of earthquake engineering, seismic analysis methods, seismology and seismic risks of built environments.In this course, you will learn about:1- Seismology, earth structure, and layers and plate tectonics and continent movements which are the main cause of earthquakes. After that, I will focus on faults and different types of the faults that can cause damage.2- How scientists record the earthquakes and different seismic waves which are very important for earthquake engineers.3- How to find the earthquake epicentre and what are the different seismic scales.4- World's seismicity followed by the phenomena during and after the earthquakes.5- Seismograph parameters and Gutenberg Richter law.6- How to calculate earthquake return period7- Earthquake response spectrum.8- All the seismic analysis methods of structures such as equivalent static analysis, response spectrum analysis and time history analysis.9- Seismic risk parameters and how to reduce these risks.10- The impacts of the built environments and humans and the economic aspect of earthquakes.11- Different mitigation measures in order to reduce earthquake risk.By the end of this course, you will get a deep understanding of earthquake engineering, seismic analysis methods, seismology, and seismic risks of built environments.THIS COURSE IS BENEFICIAL FOR:· Earthquake engineering students· Geotechnical engineering students· Civil engineering students· Structural engineering students
What you'll learn
Understand the basics of seismology and plate tectonics
Identify different types of faults that can cause earthquakes
Learn how to record seismic waves and determine earthquake epicenters
Explore seismicity and the impacts of earthquakes on built environments
Calculate earthquake return periods and response spectra
Apply various seismic analysis methods like equivalent static analysis and response spectrum analysis
Assess seismic risk parameters and mitigation measures