activity
20172020
most citedInterface-resolved direct numerical simulations of sediment transport in a turbulent oscillatory boundary layer

61 citations · 134 across the 4 of their papers we have counts for

collaborators

5 papers

physics.flu-dyn202030 cited

Sediment transport under oscillatory flows

Giovanna Vittori, Paolo Blondeaux, Marco Mazzuoli +2

The results of Direct Numerical Simulations of the oscillatory flow over a cohesionless bed of spherical particles, mimicking sediment grains, are described. The flow around the se…

physics.flu-dyn201961 cited

Interface-resolved direct numerical simulations of sediment transport in a turbulent oscillatory boundary layer

Marco Mazzuoli, Paolo Blondeaux, Giovanna Vittori +3

The flow within an oscillatory boundary layer, which approximates the flow generated by propagating sea waves of small amplitude close to the bottom, is simulated numerically by in…

physics.flu-dyn2018

Direct numerical simulations of ripples in an oscillatory flow

Marco Mazzuoli, Aman G. Kidanemariam, Markus Uhlmann

Sea ripples are small-scale bedforms which originate from the interaction of an oscillatory flow with an erodible sand bed. The phenomenon of sea ripple formation is investigated b…

physics.flu-dyn20176 cited

Direct numerical simulation of the oscillatory flow around a sphere resting on a rough bottom

Marco Mazzuoli, Paolo Blondeaux, Julian Simeonov +1

The oscillatory flow around a spherical object lying on a rough bottom is investigated by means of direct numerical simulations of continuity and Navier-Stokes equations. The rough…

physics.flu-dyn201737 cited

Direct numerical simulation of open-channel flow over a fully-rough wall at moderate relative submergence

Marco Mazzuoli, Markus Uhlmann

Direct numerical simulation of open-channel flow over a bed of spheres arranged in a regular pattern has been carried out at bulk Reynolds number and roughness Reynolds number (bas…