Understanding turbulence is key to our comprehension of many natural and technological flow processes. At the heart of this phenomenon lies its intricate multiscale nature, describing the coupling between different-sized eddies in space and time. Here we analyze the structure of turbulent flows by quantifying correlations between different length scales using methods inspired from quantum many-body physics. We present the results for interscale correlations of two paradigmatic flow examples, and use these insights along with tensor network theory to design a structure-resolving algorithm for simulating turbulent flows. With this algorithm, we find that the incompressible Navier–Stokes equations can be accurately solved even when reducing th...
We present quantum numerical methods for the typical initial boundary value problems (IBVPs) of conv...
We elaborate the physics of systems of unconstrained, reconnecting vortex filaments with dynamic fin...
International audienceWe study freely decaying quantum turbulence by performing high-resolution nume...
Understanding turbulence is key to our comprehension of many natural and technological flow processe...
International audienceThe velocity circulation, a measure of the rotation of a fluid within a closed...
The infinite superpositions of random plane waves are known to be threaded with vortex line singular...
Quantum turbulence, easily generated in superfluid helium, consists of a disordered tangle of thin, ...
Quantum turbulence, which manifests itself via a tangle of quantized vortices, occurs in quantum flu...
Identified as a unique regime of fluid flow some 500 years ago, turbulence has fas-cinated and confo...
This paper is concerned with the numerical investigation of Quantum Turbulence (QT) described by the...
PhD ThesisThe study of turbulence in superfluid Helium II suggests that at least in part the rules ...
International audienceThe turbulent inertial cascade undergone by a quantum fluid at small but finit...
This chapter describes results of a recent investigation aiming to assess the potential of quantum c...
Computational fluid dynamics is both an active research field and a key tool for industrial applicat...
Turbulence, the irregular motion of fluids, is a challenging problem in physics. Yet some properties...
We present quantum numerical methods for the typical initial boundary value problems (IBVPs) of conv...
We elaborate the physics of systems of unconstrained, reconnecting vortex filaments with dynamic fin...
International audienceWe study freely decaying quantum turbulence by performing high-resolution nume...
Understanding turbulence is key to our comprehension of many natural and technological flow processe...
International audienceThe velocity circulation, a measure of the rotation of a fluid within a closed...
The infinite superpositions of random plane waves are known to be threaded with vortex line singular...
Quantum turbulence, easily generated in superfluid helium, consists of a disordered tangle of thin, ...
Quantum turbulence, which manifests itself via a tangle of quantized vortices, occurs in quantum flu...
Identified as a unique regime of fluid flow some 500 years ago, turbulence has fas-cinated and confo...
This paper is concerned with the numerical investigation of Quantum Turbulence (QT) described by the...
PhD ThesisThe study of turbulence in superfluid Helium II suggests that at least in part the rules ...
International audienceThe turbulent inertial cascade undergone by a quantum fluid at small but finit...
This chapter describes results of a recent investigation aiming to assess the potential of quantum c...
Computational fluid dynamics is both an active research field and a key tool for industrial applicat...
Turbulence, the irregular motion of fluids, is a challenging problem in physics. Yet some properties...
We present quantum numerical methods for the typical initial boundary value problems (IBVPs) of conv...
We elaborate the physics of systems of unconstrained, reconnecting vortex filaments with dynamic fin...
International audienceWe study freely decaying quantum turbulence by performing high-resolution nume...