International audienceA numerical simulation of the 26th December, 2004 Indian Ocean tsunami of the Tamil Nadu coastal zone is presented. The simulation approach is based on a fully nonlinear Boussinesq tsunami propagation model and included an accurate computational domain and a robust coseismic source. The simulation is first confronted to available tide gauge and runup observations. The agreement between observations and the predicted wave heights allowed a reasonable validation of the simulation. As a result, a full picture of the tsunami impact is provided over the entire coastal zone Tamil Nadu. The processes responsible for coastal vulnerability are discussed
The tsunami caused by the magnitude 9.1 Andaman-Sumatra earthquake in 2004 brought into limelight th...
The 2004 Sumatra earthquake and the associated tsunamis are one of the most devastating natural disa...
The mega event of Indian Ocean Tsunami 26th December 2004, stressed the need for assessing tsunami h...
International audienceA numerical simulation of the 26th December, 2004 Indian Ocean tsunami of the ...
International audienceA numerical simulation of the 26th December 2004 Indian Ocean tsunami for the ...
Environmental Modelling & Software, pp. online, 2010International audienceA numerical simulation of ...
A numerical simulation of the 26th December 2004 Indian Ocean tsunami for the entire coast of Sri La...
The December 26, 2004 tsunami is one of the most devastating tsunami in recorded history. It was gen...
The devastating 26 December 2004 Indian Ocean tsunami stressed the need for assessing tsunami hazard...
December 2004 tsunami in the Indian Ocean region has been simulated using MIKE-21 HD model. The vert...
The December 26, 2004 tsunami was perhaps the most devastating tsunami in recorded history, causing ...
The tsunami hazard for the east coast of India is assessed. The Sumatra-Andaman 1300 km long fault i...
Indian Ocean (2004) Tsunami and following tragic consequences demonstrated lack of relevant experien...
After the destructive event of December 26, 2004, many attempts have been made to accurately simulat...
The tsunami event generated by the great Sumatra-Andaman earthquake on 26 December 2004 was simulate...
The tsunami caused by the magnitude 9.1 Andaman-Sumatra earthquake in 2004 brought into limelight th...
The 2004 Sumatra earthquake and the associated tsunamis are one of the most devastating natural disa...
The mega event of Indian Ocean Tsunami 26th December 2004, stressed the need for assessing tsunami h...
International audienceA numerical simulation of the 26th December, 2004 Indian Ocean tsunami of the ...
International audienceA numerical simulation of the 26th December 2004 Indian Ocean tsunami for the ...
Environmental Modelling & Software, pp. online, 2010International audienceA numerical simulation of ...
A numerical simulation of the 26th December 2004 Indian Ocean tsunami for the entire coast of Sri La...
The December 26, 2004 tsunami is one of the most devastating tsunami in recorded history. It was gen...
The devastating 26 December 2004 Indian Ocean tsunami stressed the need for assessing tsunami hazard...
December 2004 tsunami in the Indian Ocean region has been simulated using MIKE-21 HD model. The vert...
The December 26, 2004 tsunami was perhaps the most devastating tsunami in recorded history, causing ...
The tsunami hazard for the east coast of India is assessed. The Sumatra-Andaman 1300 km long fault i...
Indian Ocean (2004) Tsunami and following tragic consequences demonstrated lack of relevant experien...
After the destructive event of December 26, 2004, many attempts have been made to accurately simulat...
The tsunami event generated by the great Sumatra-Andaman earthquake on 26 December 2004 was simulate...
The tsunami caused by the magnitude 9.1 Andaman-Sumatra earthquake in 2004 brought into limelight th...
The 2004 Sumatra earthquake and the associated tsunamis are one of the most devastating natural disa...
The mega event of Indian Ocean Tsunami 26th December 2004, stressed the need for assessing tsunami h...