Title of article :
Discontinuous Galerkin unsteady discrete adjoint method for real-time efficient tsunami simulations
Author/Authors :
Blaise، نويسنده , , Sébastien and St-Cyr، نويسنده , , Amik and Mavriplis، نويسنده , , Dimitri and Lockwood، نويسنده , , Brian، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Abstract :
An unsteady discrete adjoint implementation for a discontinuous Galerkin model solving the shallow water wave equations on the sphere is presented. Its use for tsunami simulations is introduced to reconstruct the initial condition automatically from buoy measurements. Based on this feature, a real-time tsunami model is developed, using several numerical tools such as a high-order discretization, hp-refinement, parallel dynamic load balancing and adjoint-based data assimilation. The model is able to reconstruct the tsunami source and accurately forecast its far-field propagation (e.g. from Japan to Chile, at a distance of about 17000 km) in a computational time 20 times faster than the physical propagation time, to which the data collecting time needs to be added. The work presented constitutes a step towards an efficient nonlinear tsunami warning model. Additional features could be added for more complete realistic forecasts.
Keywords :
discontinuous Galerkin , Dynamic adaptation , Tsunami simulation , Discrete adjoint , optimization
Journal title :
Journal of Computational Physics
Journal title :
Journal of Computational Physics