most citedComputational analysis of shock-induced flow through stationary particle clouds

48 citations · 58 across the 4 of their papers we have counts for

collaborators

5 papers

physics.flu-dyn2021

Performance of drag force models for shock-accelerated flow in dense particle suspensions

Andreas Nygård Osnes, Magnus Vartdal

Models for prediction of drag forces within a particle cloud following shock-acceleration are evaluated with the aid of results from particle-resolved simulations in order to quant…

physics.flu-dyn2019

Particle-resolved simulations of shock-induced flow through particle clouds at different Reynolds numbers

Andreas Nygård Osnes, Magnus Vartdal, Marianne Gjestvold Omang +1

This study investigates the Reynolds-number dependence of shock-induced flow through particle layers at 10\% volume fraction, using ensemble-averaged results from particle-resolved…

physics.flu-dyn20193 cited

Numerical investigation of shock wave particle cloud interaction in cylindrical geometries

Andreas Nygård Osnes, Magnus Vartdal, Marianne Gjestvold Omang +1

This study investigates the interaction of a shock wave with a fixed layer of particles in cylindrical geometries using particle-resolved large eddy simulations. The curvature radi…

physics.flu-dyn20197 cited

Linear motion of multiple superposed viscous fluids

Magnus Vartdal, Andreas Nygård Osnes

In this paper the small-amplitude motion of multiple superposed viscous fluids is studied as a linearized initial-value problem. The analysis results in a closed set of equations f…

physics.flu-dyn201948 cited

Computational analysis of shock-induced flow through stationary particle clouds

Andreas Nygård Osnes, Magnus Vartdal, Marianne Gjestvold Omang +1

We investigate the shock-induced flow through random particle arrays using particle-resolved Large Eddy Simulations for different incident shock wave Mach numbers, particle volume…