Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Colombini, Marco
2014.
A decade’s investigation of the stability of erodible stream beds.
Journal of Fluid Mechanics,
Vol. 756,
Issue. ,
p.
1.
Khosronejad, Ali
and
Sotiropoulos, Fotis
2014.
Numerical simulation of sand waves in a turbulent open channel flow.
Journal of Fluid Mechanics,
Vol. 753,
Issue. ,
p.
150.
Capecelatro, Jesse
Desjardins, Olivier
and
Fox, Rodney O.
2015.
On fluid–particle dynamics in fully developed cluster-induced turbulence.
Journal of Fluid Mechanics,
Vol. 780,
Issue. ,
p.
578.
Arolla, Sunil K.
and
Desjardins, Olivier
2015.
Transport modeling of sedimenting particles in a turbulent pipe flow using Euler–Lagrange large eddy simulation.
International Journal of Multiphase Flow,
Vol. 75,
Issue. ,
p.
1.
Picano, Francesco
Breugem, Wim-Paul
and
Brandt, Luca
2015.
Turbulent channel flow of dense suspensions of neutrally buoyant spheres.
Journal of Fluid Mechanics,
Vol. 764,
Issue. ,
p.
463.
Derksen, Jos J.
2015.
Simulations of granular bed erosion due to a mildly turbulent shear flow.
Journal of Hydraulic Research,
Vol. 53,
Issue. 5,
p.
622.
Chouippe, Agathe
and
Uhlmann, Markus
2015.
Forcing homogeneous turbulence in direct numerical simulation of particulate flow with interface resolution and gravity.
Physics of Fluids,
Vol. 27,
Issue. 12,
Fathel, Siobhan L.
Furbish, David Jon
and
Schmeeckle, Mark W.
2015.
Experimental evidence of statistical ensemble behavior in bed load sediment transport.
Journal of Geophysical Research: Earth Surface,
Vol. 120,
Issue. 11,
p.
2298.
Khosronejad, Ali
Kozarek, Jessica L.
Palmsten, Margaret L.
and
Sotiropoulos, Fotis
2015.
Numerical simulation of large dunes in meandering streams and rivers with in-stream rock structures.
Advances in Water Resources,
Vol. 81,
Issue. ,
p.
45.
Sotiropoulos, Fotis
and
Khosronejad, Ali
2016.
Sand waves in environmental flows: Insights gained by coupling large-eddy simulation with morphodynamics.
Physics of Fluids,
Vol. 28,
Issue. 2,
Kartushinsky, A.
Tisler, S.
Oliveira, J.L.G.
and
van der Geld, C.W.M.
2016.
Eulerian-Eulerian modelling of particle-laden two-phase flow.
Powder Technology,
Vol. 301,
Issue. ,
p.
999.
Charru, F.
Bouteloup, J.
Bonometti, T.
and
Lacaze, L.
2016.
Sediment transport and bedforms: a numerical study of two-phase viscous shear flow.
Meccanica,
Vol. 51,
Issue. 12,
p.
3055.
Saliakellis, Panagiotis
and
Yiantsios, Stergios G.
2016.
Macroscopic characteristics of heavy particle resuspension obtained from direct numerical simulations of pressure driven channel flow.
International Journal of Multiphase Flow,
Vol. 84,
Issue. ,
p.
188.
Sierakowski, Adam J.
2016.
GPU-centric resolved-particle disperse two-phase flow simulation using the Physalis method.
Computer Physics Communications,
Vol. 207,
Issue. ,
p.
24.
Sun, Rui
and
Xiao, Heng
2016.
Sediment micromechanics in sheet flows induced by asymmetric waves: A CFD–DEM study.
Computers & Geosciences,
Vol. 96,
Issue. ,
p.
35.
Finn, Justin R.
and
Li, Ming
2016.
Regimes of sediment-turbulence interaction and guidelines for simulating the multiphase bottom boundary layer.
International Journal of Multiphase Flow,
Vol. 85,
Issue. ,
p.
278.
Cheviron, Bruno
and
Moussa, Roger
2016.
Determinants of modelling choices for 1-D free-surface flow and morphodynamics in hydrology and hydraulics: a review.
Hydrology and Earth System Sciences,
Vol. 20,
Issue. 9,
p.
3799.
Sun, Rui
and
Xiao, Heng
2016.
SediFoam: A general-purpose, open-source CFD–DEM solver for particle-laden flow with emphasis on sediment transport.
Computers & Geosciences,
Vol. 89,
Issue. ,
p.
207.
Sierakowski, Adam J.
and
Prosperetti, Andrea
2016.
Resolved-particle simulation by the Physalis method: Enhancements and new capabilities.
Journal of Computational Physics,
Vol. 309,
Issue. ,
p.
164.
Fornari, W.
Formenti, A.
Picano, F.
and
Brandt, L.
2016.
The effect of particle density in turbulent channel flow laden with finite size particles in semi-dilute conditions.
Physics of Fluids,
Vol. 28,
Issue. 3,