activity
20202022
most citedHeterogeneous CPU/GPU co-execution of CFD simulations on the POWER9 architecture: Application to airplane aerodynamics

35 citations · 42 across the 5 of their papers we have counts for

collaborators

5 papers

cs.DC20222 cited

A portable coding strategy to exploit vectorization on combustion simulations

Fabio Banchelli, Guillermo Oyarzun, Marta Garcia-Gasulla +4

The complexity of combustion simulations demands the latest high-performance computing tools to accelerate its time-to-solution results. A current trend on HPC systems is the utili…

cs.DC20211 cited

Performance assessment of CUDA and OpenACC in large scale combustion simulations

Guillermo Oyarzun, Daniel Mira, Guillaume Houzeaux

GPUs have climbed up to the top of supercomputer systems making life harder to many legacy scientific codes. Nowadays, many recipes are being used in such code's portability, witho…

physics.comp-ph20214 cited

An FPGA cached sparse matrix vector product (SpMV) for unstructured computational fluid dynamics simulations

Guillermo Oyarzun, Daniel Peyrolon, Carlos Alvarez +1

Field Programmable Gate Arrays generate algorithmic specific architectures that improve the code's FLOP per watt ratio. Such devices are re-gaining interest due to the rise of new…

physics.comp-ph2020

Parallel SFC-based mesh partitioning and load balancing

Ricard Borrell, Guillermo Oyarzun, Damien Dosimont +1

Modern supercomputers allow the simulation of complex phenomena with increased accuracy. Eventually, this requires finer geometric discretizations with larger numbers of mesh eleme…

cs.DC202035 cited

Heterogeneous CPU/GPU co-execution of CFD simulations on the POWER9 architecture: Application to airplane aerodynamics

R. Borrell, D. Dosimont, M. Garcia-Gasulla +6

High fidelity Computational Fluid Dynamics simulations are generally associated with large computing requirements, which are progressively acute with each new generation of superco…