activity
20182026
most citedAn Uncertainty-Quantification Framework for Assessing Accuracy, Sensitivity, and Robustness in Computational Fluid Dynamics

1 citations · 3 across the 3 of their papers we have counts for

collaborators
Showing physics.flu-dynShow all

8 papers · 1 filter

physics.flu-dyn20261 cited

Causally coherent structures in turbulent dynamical systems

Daniele Massaro, Saleh Rezaeiravesh, Philipp Schlatter

The extraction of spatio-temporal coherence in high-dimensional, chaotic, non-linear dynamical systems, such as turbulent flows, remains a fundamental challenge in physics, mathema…

physics.flu-dyn2025

Effects of lower floating-point precision on scale-resolving numerical simulations of turbulence

Martin Karp, Ronith Stanly, Timofey Mukha +11

Modern computing clusters offer specialized hardware for reduced-precision arithmetic that can speed up the time to solution significantly. This is possible due to a decrease in da…

physics.flu-dyn2025

Robustness and uncertainty of direct numerical simulation under the influence of rounding and noise

Martin Karp, Niclas Jansson, Saleh Rezaeiravesh +2

Numerical precision in large-scale scientific computations has become an emerging topic due to recent developments in computer hardware. Lower floating point precision offers the p…

physics.flu-dyn20231 cited

In-situ Estimation of Time-averaging Uncertainties in Turbulent Flow Simulations

Saleh Rezaeiravesh, Christian Gscheidle, Adam Peplinski +2

The statistics obtained from turbulent flow simulations are generally uncertain due to finite time averaging. The techniques available in the literature to accurately estimate thes…

physics.flu-dyn2018

Systematic Study of Accuracy of Wall-Modeled Large Eddy Simulation using Uncertainty Quantification Techniques

Saleh Rezaeiravesh, Timofey Mukha, Mattias Liefvendahl

The predictive accuracy of wall-modeled large eddy simulation is studied by systematic simulation campaigns of turbulent channel flow. The effect of wall model, grid resolution and…

physics.flu-dyn2018

A Library for Wall-Modelled Large-Eddy Simulation Based on OpenFOAM Technology

Timofey Mukha, Saleh Rezaeiravesh, Mattias Liefvendahl

This work presents a feature-rich open-source library for wall-modelled large-eddy simulation (WMLES), which is a turbulence modelling approach that reduces the computational cost…