activity
20202025
most citedConservative finite-volume framework and pressure-based algorithm for flows of incompressible, ideal-gas and real-gas fluids at all speeds

80 citations · 162 across the 8 of their papers we have counts for

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7 papers · 1 filter

physics.comp-ph202417 cited

PLIC-Net: A Machine Learning Approach for 3D Interface Reconstruction in Volume of Fluid Methods

Andrew Cahaly, Fabien Evrard, Olivier Desjardins

The accurate reconstruction of immiscible fluid-fluid interfaces from the volume fraction field is a critical component of geometric Volume of Fluid (VOF) methods. A common strateg…

physics.comp-ph2024

Undisturbed velocity recovery with transient and weak inertia effects in volume-filtered simulations of particle-laden flows

Fabien Evrard, Akshay Chandran, Ricardo Cortez +1

In volume-filtered Euler-Lagrange simulations of particle-laden flows, the fluid forces acting on a particle are estimated using reduced models, which rely on the knowledge of the…

physics.comp-ph20242 cited

Simulating interfacial flows: a farewell to planes

Fabien Evrard, Robert Chiodi, Berend van Wachem +1

Over the past decades, the volume-of-fluid (VOF) method has been the method of choice for simulating atomization processes, owing to its unique ability to discretely conserve mass.…

physics.comp-ph20235 cited

Efficient reduction of vertex clustering using front tracking with surface normal propagation restriction

Christian Gorges, Azur Hodžić, Fabien Evrard +3

A significant computational expense and source of numerical errors in front tracking is the remeshing of the triangulated front, required due to distortion and compaction of the fr…

physics.comp-ph202217 cited

Breaching the capillary time-step constraint using a coupled VOF method with implicit surface tension

Fabian Denner, Fabien Evrard, Berend van Wachem

The capillary time-step constraint is the dominant limitation on the applicable time-step in many simulations of interfacial flows with surface tension and, consequently, governs t…

physics.comp-ph202034 cited

Quantifying the errors of the particle-source-in-cell Euler-Lagrange method

Fabien Evrard, Fabian Denner, Berend van Wachem

The particle-source-in-cell Euler-Lagrange (PSIC-EL) method is widely used to simulate flows laden with particles. Its accuracy, however, is known to deteriorate as the ratio betwe…