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Seismic Risk Assessment Model Based on the Migration of Seismic Activity in Different Seismic Zones of the World

Project Details

Description

This project focuses on analyzing geophysical phenomena, specifically investigating the established relationship between worldwide seismic activity and solar activity, a characteristic reflecting the wave-like nature of seismic processes. The study is grounded in the direct dependence between seismic wave energy and velocity, highlighting the wave properties of the geophysical medium. The proposed methodology aims to establish a mathematical model for earthquake prediction influenced by global solar activity. This requires the comprehensive collection of seismic data from the IRIS portal and space weather data from SPACE WEATHER. The gathered information will be rigorously validated using sources such as the USGS and other specialized resources. Finally, the obtained data will undergo analysis, processing, and verification to construct and validate the predictive model, taking into account the influence of phenomena like solar storms on the Earth's mantle convection currents.<br/><br/><b>Goal</b>: <br/>The main objective is to develop a predictive mathematical model for global earthquakes, based on the correlation between worldwide seismic activity and solar activity. This involves analyzing geophysical phenomena using physical, mathematical, and computational principles applied to international seismic databases.<br/><br/><b>Research lines</b>: <br/>Geographic information systems
StatusFinished
Effective start/end date2/04/182/04/19

Keywords

  • Seismic Activity
  • Solar Activity
  • Earthquake Prediction
  • Geophysics
  • Mathematical Modeling
  • Space Weather
  • Seismic Databases
  • Wave Properties
  • Earth's Crust
  • Solar Storms

CACES Knowledge Areas

  • 235A Earth Sciences

Categorías UNESCO

  • Earth sciences

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