Jun 29, 2024 · This paper applies the massively parallel matrix-free finite element framework HyTeG to approximate solutions to stationary Stokes systems and time-dependent, ...
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Abstract. Accurate retrodictions of the past evolution of convection in the Earth's mantle are crucial to obtain a qualitative understanding.
Numerical Studies on Coupled Stokes-Transport Systems for Mantle Convection. https://doi.org/10.1007/978-3-031-63759-9_33 ·. Journal: Computational Science ...
This paper applies the massively parallel matrix-free finite element framework HyTeG to approximate solutions to stationary Stokes systems and time-dependent, ...
Ponsuganth Ilangovan , Eugenio D'Ascoli, Nils Kohl , Marcus Mohr : Numerical Studies on Coupled Stokes-Transport Systems for Mantle Convection.
Numerical Studies on Coupled Stokes-Transport Systems for Mantle Convection ... Accurate retrodictions of the past evolution of convection in the Earth's mantle ...
Ilangovan, Ponsuganth and D'Ascoli, Eugenio and Kohl, Nils and Mohr, Marcus (2024), Numerical Studies on Coupled Stokes-Transport Systems for Mantle Convection ...
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Numerical Studies on Coupled Stokes-Transport Systems for Mantle Convection. P Ilangovan, E D'Ascoli, N Kohl, M Mohr. International Conference on Computational ...
Jul. 2024: Conference talk by P. Ilangovan (Numerical Studies on Coupled Stokes-Transport Systems for Mantle Convection) at the IHPCES 2024 workshop jointly ...
Ilangovan, Ponsuganth and D'Ascoli, Eugenio and Kohl, Nils and Mohr, Marcus (2024), Numerical Studies on Coupled Stokes-Transport Systems for Mantle Convection ...