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20162024
most citedHigh-speed turbulent flows towards the exascale: STREAmS-2 porting and performance

4 citations · 6 across the 5 of their papers we have counts for

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physics.flu-dyn2024

CaLES: A GPU-accelerated solver for large-eddy simulation of wall-bounded flows

Maochao Xiao, Alessandro Ceci, Pedro Costa +2

We introduce CaLES, a GPU-accelerated finite-difference solver designed for large-eddy simulations (LES) of incompressible wall-bounded flows in massively parallel environments. Bu…

physics.flu-dyn2024

Direct numerical simulation of drag reduction in rotating pipe flow up to

Maochao Xiao, Alessandro Ceci, Paolo Orlandi +1

Direct numerical simulations (DNS) of rotating pipe flows up to are carried out to investigate drag reduction effects associated with axial rotation, extending…

physics.flu-dyn20234 cited

High-speed turbulent flows towards the exascale: STREAmS-2 porting and performance

Srikanth Sathyanarayana, Matteo Bernardini, Davide Modesti +2

Exascale High Performance Computing (HPC) represents a tremendous opportunity to push the boundaries of Computational Fluid Dynamics (CFD), but despite the consolidated trend towar…

physics.flu-dyn20162 cited

A high-fidelity solver for turbulent compressible flows on unstructured meshes

Davide Modesti, Sergio Pirozzoli

We develop a high-fidelity numerical solver for the compressible Navier-Stokes equations, with the main aim of highlighting the predictive capabilities of low-diffusive numerics fo…

physics.flu-dyn2016

An efficient semi-implicit solver for direct numerical simulation of compressible flows at all speeds

Davide Modesti, Sergio Pirozzoli

We develop a semi-implicit algorithm for time-accurate simulation of the compressible Navier-Stokes equations, with special reference to wall-bounded flows. The method is based on…