most citedSimulating interfacial flows: a farewell to planes

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physics.flu-dyn2026

Consistent closure modeling in large eddy simulations by direct approximation of the filtered advection term

Max Hausmann, Berend van Wachem

This article addresses the widely overlooked conceptual inconsistency of the large eddy simulation (LES) framework, namely that the commonly used advection term introduces higher w…

physics.flu-dyn2024

Correlations for aerodynamic force coefficients of non-spherical particles in compressible flows

Christian Gorges, Victor Chéron, Anjali Chopra +2

This study presents particle-resolved direct numerical simulations using three-dimensional body-fitted hexahedral meshes to investigate the aerodynamic force and torque coefficient…

physics.flu-dyn2024

Physically consistent immersed boundary method: a framework for predicting hydrodynamic forces on particles with coarse meshes

Max Hausmann, Hani Elmestikawy, Berend van Wachem

In the present paper, a fluid-particle coupling method is directly derived from the Navier-Stokes equations (NSE) by applying the concept of volume-filtering, yielding a physically…

physics.flu-dyn2024

Drag, lift, and torque correlations for axi-symmetric rod-like non-spherical particles in linear wall-bounded shear flow

Victor Chéron, Berend van Wachem

This paper presents novel correlations to predict the drag, lift, and torque coefficients of axi-symmetric non-spherical rod-like particles in a wall-bounded linear shear flow. The…

physics.flu-dyn2024

A semi-analytical transient undisturbed velocity correction scheme for wall-bounded two-way coupled Euler-Lagrange simulations

Akshay Chandran, Fabien Evrard, Berend van Wachem

In the present paper, we model the velocity disturbance generated by a regularized forcing near a planar wall, which, along with the temporal nature of the forcing, provides an est…

physics.flu-dyn2024

Study and derivation of closures in the volume-filtered framework for particle-laden flows

Max Hausmann, Victor Chéron, Fabien Evrard +1

The volume-filtering of the Navier-Stokes equations allows to consider the effect that particles have on the fluid without further assumptions, but closures arise of which the impl…