- Advanced Numerical Methods in Computational Mathematics
- Computational Fluid Dynamics and Aerodynamics
- Information Technology Governance and Strategy
- HVDC Systems and Fault Protection
- Smart Grid Security and Resilience
- Fluid Dynamics and Turbulent Flows
- Real-time simulation and control systems
- Meteorological Phenomena and Simulations
- Human Resource Development and Performance Evaluation
- Software System Performance and Reliability
Sandia National Laboratories
2021-2023
In this work, we present a discontinuous-Galerkin method for evolving relativistic hydrodynamics. We include an exploration of analytical and iterative methods to recover the primitive variables from conserved ideal equation state Taub-Matthews approximation Synge state. also new operator enforcing physically permissible at all basis points within element while preserving volume average implement using Kokkos performance-portability library enable running performance on both CPUs GPUs. use...
In this work, we present a discontinuous-Galerkin method for evolving relativistic hydrodynamics. We include an exploration of analytical and iterative methods to recover the primitive variables from conserved ideal equation state Taub-Matthews approximation Synge state. also new operator enforcing physically permissible at all basis points within element while preserving volume average implement using Kokkos performance-portability library enable running performance on both CPUs GPUs. use...