Advanced Remote Sensing Technology for Tsunami Modelling and Forecasting
Advanced Remote Sensing Technology for Tsunami Modelling and Forecasting
Marghany, Maged
Taylor & Francis Inc
07/2018
316
Dura
Inglês
9780815386391
15 a 20 dias
978
Descrição não disponível.
Principles of Tsunami. Tsunami Generation Mechanisms. Tsunami of Sumatra-Andaman Earthquake 26 December 2004. Novel Theories of Tsunami Generation Mechanisms. Modification of the Earth 's Rotation by 2004 Earthquakes. Principles of Optical Remote Sensing for Tsunami Observation. Potential of Optical Remote Sensing Satellite for Monitoring Tsunami. Modelling Shoreline Change Rates due to the Tsunami Impact. Modelling of Tsunami Impacts On Physical Properties of Water Using Modis Data: A Study Case of Aceh, Indonesia. Genetic Algorithm for Simulation of Tsunami Impacts on Water Mass Variations Using MODIS Satellite Data. Three-Dimensional Tsunami Wave Simulation from Quickbird Satellite Data. Four-Dimensional Hologram Interferometry of Tsunami Waves from Quickbird Satellite Data. Principles of Synthetic Aperture Radar. Detection of Internal Wave from Synthetic Aperture Radar Post Tsunami. Altimeter Satellite Data Observed Tsunami Spreading. Schroedinger Theory for Future Tsunami Forecasting in Malacca Straits, Indian Ocean, Red Sea and Nile River.
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Tsunami Wave;QuickBird Satellite Data;Tsunami;Sea Water;Remote sensing;Tsunami Propagation;Coastal erosion;Tsunami Wave Propagation;Internal waves due to tsunami;Predicting the next tsunami;Subduction Zones;Solitary Waves;Andaman Sea;Sea Surface Height;MODIS Data;Quickbird Data;Synthetic Aperture Radar;Radar Backscatter;Edge Waves;Wave Height;Sea Surface;Banda Aceh;Internal Wave;ASAR Data;SSS;NOAA AVHRR;Phase Unwrapping;Canny Algorithm;Aster Data
Principles of Tsunami. Tsunami Generation Mechanisms. Tsunami of Sumatra-Andaman Earthquake 26 December 2004. Novel Theories of Tsunami Generation Mechanisms. Modification of the Earth 's Rotation by 2004 Earthquakes. Principles of Optical Remote Sensing for Tsunami Observation. Potential of Optical Remote Sensing Satellite for Monitoring Tsunami. Modelling Shoreline Change Rates due to the Tsunami Impact. Modelling of Tsunami Impacts On Physical Properties of Water Using Modis Data: A Study Case of Aceh, Indonesia. Genetic Algorithm for Simulation of Tsunami Impacts on Water Mass Variations Using MODIS Satellite Data. Three-Dimensional Tsunami Wave Simulation from Quickbird Satellite Data. Four-Dimensional Hologram Interferometry of Tsunami Waves from Quickbird Satellite Data. Principles of Synthetic Aperture Radar. Detection of Internal Wave from Synthetic Aperture Radar Post Tsunami. Altimeter Satellite Data Observed Tsunami Spreading. Schroedinger Theory for Future Tsunami Forecasting in Malacca Straits, Indian Ocean, Red Sea and Nile River.
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
Tsunami Wave;QuickBird Satellite Data;Tsunami;Sea Water;Remote sensing;Tsunami Propagation;Coastal erosion;Tsunami Wave Propagation;Internal waves due to tsunami;Predicting the next tsunami;Subduction Zones;Solitary Waves;Andaman Sea;Sea Surface Height;MODIS Data;Quickbird Data;Synthetic Aperture Radar;Radar Backscatter;Edge Waves;Wave Height;Sea Surface;Banda Aceh;Internal Wave;ASAR Data;SSS;NOAA AVHRR;Phase Unwrapping;Canny Algorithm;Aster Data