TsunAWI is a code to simulate the origin, propagation, and inundation of a tsunami. It is based on the shallow water equations, discretised with finite elements on unstructured triangular meshes. The code is written in Fortran90 with MPI and OpenMP parallelisation. This version is also available as https://gitlab.awi.de/tsunawi/tsunawi/-/tags/LEXIS and was used to compute the LEXIS tsunami test cases for Chile, doi:10.5281/zenodo.5799056 For documentation, please refer to https://tsunami.awi.de
Tsunami hazard is connected with loss of human life, flooding of coastal structures, destruction of ...
Abstract—Modeling tsunami wave propagation is a very challenging numerical task, because it involves...
After the destructive event of December 26, 2004, many attempts have been made to accurately simulat...
Based on the shallow water equations,the tsunami wave propagation in the deep ocean and an assessmen...
The tsunami simulation software TsunAWI is based on unstructured finite element meshes, utilizing a ...
The numerical simulation code TsunAWI was developed in the framework of the German-Indonesian Tsunam...
Starting in 2005, the GITEWS project (German-Indonesian Tsunami Early Warning System) established f...
In the end of year 2008 TsunAWI (Tsunami unstructured mesh finite element model developed at Alfred ...
The devastating Sumatra-Andaman tsunami of December 2004, is a milestone for the internationalcommun...
The numerical simulation code TsunAWI was developed in the framework of the German-Indonesian Tsunam...
Modeling tsunami wave propagation is a very challenging numerical task, because it involves many fac...
In inundation zones, tsunami motion turns from wave motion to flow of water. Modelling of this pheno...
A new triangular-based adaptive mesh finite element numerical model for tsunami propagation (and inu...
The tsunami event generated by the great Sumatra-Andaman earthquake on 26 December 2004 was simulate...
In the context of response to disasters, fast and accurate simulations can be integrated into a real...
Tsunami hazard is connected with loss of human life, flooding of coastal structures, destruction of ...
Abstract—Modeling tsunami wave propagation is a very challenging numerical task, because it involves...
After the destructive event of December 26, 2004, many attempts have been made to accurately simulat...
Based on the shallow water equations,the tsunami wave propagation in the deep ocean and an assessmen...
The tsunami simulation software TsunAWI is based on unstructured finite element meshes, utilizing a ...
The numerical simulation code TsunAWI was developed in the framework of the German-Indonesian Tsunam...
Starting in 2005, the GITEWS project (German-Indonesian Tsunami Early Warning System) established f...
In the end of year 2008 TsunAWI (Tsunami unstructured mesh finite element model developed at Alfred ...
The devastating Sumatra-Andaman tsunami of December 2004, is a milestone for the internationalcommun...
The numerical simulation code TsunAWI was developed in the framework of the German-Indonesian Tsunam...
Modeling tsunami wave propagation is a very challenging numerical task, because it involves many fac...
In inundation zones, tsunami motion turns from wave motion to flow of water. Modelling of this pheno...
A new triangular-based adaptive mesh finite element numerical model for tsunami propagation (and inu...
The tsunami event generated by the great Sumatra-Andaman earthquake on 26 December 2004 was simulate...
In the context of response to disasters, fast and accurate simulations can be integrated into a real...
Tsunami hazard is connected with loss of human life, flooding of coastal structures, destruction of ...
Abstract—Modeling tsunami wave propagation is a very challenging numerical task, because it involves...
After the destructive event of December 26, 2004, many attempts have been made to accurately simulat...