NASA NTRS · 20205007643
Implicit Thermochemical Nonequilibrium Compressible Flow Simulations on Unstructured Grids Using GPUs
Abstract
As next-generation exascale-class systems arrive, existing software must be updated accordingly to effectively utilize these systems. For high concurrency and energy efficiency, many of these systems utilize GPU architectures. In this work, we present a CUDA C++ implementation of FUN3D's thermochemical nonequilibrium capability for turbulent flows. Efficiency is demonstrated at scale using the Summit system at the Oak Ridge Leadership Computing Facility which is representative of future exascale systems. This work enables faster, higher fidelity, and scale-resolving simulations of thermochemical nonequilibrium flows including reentry, hypersonics, and combustion.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Gabriel Nastac, Aaron Walden, Eric Nielsen. Implicit Thermochemical Nonequilibrium Compressible Flow Simulations on Unstructured Grids Using GPUs. https://ntrs.nasa.gov/citations/20205007643
Cite the original work for its findings. Save a collection to share your selection of sources.