activity
20122023
most citedA concurrent precursor inflow method for Large Eddy Simulations and applications to finite length wind farms

256 citations · 666 across the 8 of their papers we have counts for

collaborators

8 papers

physics.flu-dyn202316 cited

Wind turbine sound propagation: Comparison of a linearized Euler equations model with parabolic equation methods

Jules Colas, Ariane Emmanuelli, Didier Dragna +3

Noise generated by wind turbines is significantly impacted by its propagation in the atmosphere. Hence, for annoyance issues an accurate prediction of sound propagation is critical…

physics.flu-dyn20225 cited

Effect of a 2D Hill on the Propagation of Wind Turbine Noise

Jules Colas, Ariane Emmanuelli, Didier Dragna +2

A good understanding of wind turbine noise propagation is relevant to better measure the impact of turbines on the environment. In this study, we developed numerical simulations to…

physics.flu-dyn201442 cited

Temporal structure of aggregate power fluctuations in large-eddy simulations of extended wind-farms

Richard J. A. M. Stevens, Charles Meneveau

Fluctuations represent a major challenge for the incorporation of electric power from large wind-farms into power grids. Wind farm power output fluctuates strongly in time, over va…

physics.flu-dyn201477 cited

Heat transport in boiling turbulent Rayleigh-Bénard convection

Rajaram Lakkaraju, Richard J. A. M. Stevens, Paolo Oresta +3

Boiling is an extremely effective way to promote heat transfer from a hot surface to a liquid due to several mechanisms many of which are not understood in quantitative detail. An…

physics.flu-dyn201469 cited

Spatio-temporal spectra in the logarithmic layer of wall turbulence: large-eddy simulations and simple models

Michael Wilczek, Richard J. A. M. Stevens, Charles Meneveau

Motivated by the need to characterize the spatio-temporal structure of turbulence in wall-bounded flows, we study wavenumber-frequency spectra of the streamwise velocity component…

physics.flu-dyn201497 cited

Coupled wake boundary layer model of wind-farms

Richard J. A. M. Stevens, Dennice F. Gayme, Charles Meneveau

We present and test the coupled wake boundary layer (CWBL) model that describes the distribution of the power output in a wind-farm. The model couples the traditional, industry-sta…