Large eddy simulation study of fully developed wind-turbine array boundary layers M Calaf, C Meneveau, J Meyers Physics of Fluids (1994-present) 22 (1), 015110, 2010 | 938 | 2010 |
Optimal turbine spacing in fully developed wind farm boundary layers J Meyers, C Meneveau Wind Energy 15 (2), 305-317, 2012 | 426 | 2012 |
Wake structure in actuator disk models of wind turbines in yaw under uniform inflow conditions MF Howland, J Bossuyt, LA Martínez-Tossas, J Meyers, C Meneveau Journal of Renewable and Sustainable Energy 8 (4), 043301, 2016 | 275 | 2016 |
Optimal control of energy extraction in wind-farm boundary layers JP Goit, J Meyers Journal of Fluid Mechanics 768, 5-50, 2015 | 223 | 2015 |
Database analysis of errors in large-eddy simulation J Meyers, BJ Geurts, M Baelmans Physics of Fluids (1994-present) 15 (9), 2740-2755, 2003 | 216 | 2003 |
Large eddy simulations of large wind-turbine arrays in the atmospheric boundary layer J Meyers, C Meneveau AIAA Paper 827, 2010, 2010 | 176 | 2010 |
Dynamic Strategies for Yaw and Induction Control of Wind Farms Based on Large-Eddy Simulation and Optimization W Munters, J Meyers Energies 11 (1), 177, 2018 | 153 | 2018 |
On the model coefficients for the standard and the variational multi-scale Smagorinsky model J Meyers, P Sagaut Journal of Fluid Mechanics 569, 287-319, 2006 | 151 | 2006 |
Wind farm flow control: prospects and challenges J Meyers, C Bottasso, K Dykes, P Fleming, P Gebraad, G Giebel, ... Wind Energy Science 7 (6), 2271-2306, 2022 | 137 | 2022 |
Is plane-channel flow a friendly case for the testing of large-eddy simulation subgrid-scale models? J Meyers, P Sagaut Physics of Fluids 19, 048105, 2007 | 131 | 2007 |
A control-oriented dynamic wind farm model: WFSim S Boersma, B Doekemeijer, M Vali, J Meyers, JW van Wingerden Wind Energy Science 3 (1), 75-95, 2018 | 125 | 2018 |
Shifted periodic boundary conditions for simulations of wall-bounded turbulent flows W Munters, C Meneveau, J Meyers Physics of Fluids 28 (2), 025112, 2016 | 119 | 2016 |
Boundary-layer development and gravity waves in conventionally neutral wind farms D Allaerts, J Meyers Journal of Fluid Mechanics 814, 95-130, 2017 | 117 | 2017 |
Sensitivity analysis of large-eddy simulations to subgrid-scale-model parametric uncertainty using polynomial chaos D Lucor, J Meyers, P Sagaut Journal of Fluid Mechanics 585, 255-279, 2007 | 116 | 2007 |
Large eddy simulation of a large wind-turbine array in a conventionally neutral atmospheric boundary layer D Allaerts, J Meyers Physics of Fluids (1994-present) 27 (6), 065108, 2015 | 107 | 2015 |
A computational error-assessment of central finite-volume discretizations in large-eddy simulation using a Smagorinsky model J Meyers, BJ Geurts, P Sagaut Journal of Computational Physics 227 (1), 156-173, 2007 | 106 | 2007 |
Towards practical dynamic induction control of wind farms: analysis of optimally controlled wind-farm boundary layers and sinusoidal induction control of first-row turbines W Munters, J Meyers Wind Energy Science 3 (1), 409-425, 2018 | 103 | 2018 |
Turbulent Inflow Precursor Method with Time-Varying Direction for Large-Eddy Simulations and Applications to Wind Farms W Munters, C Meneveau, J Meyers Boundary-Layer Meteorology, 1-24, 2016 | 98 | 2016 |
An optimal control framework for dynamic induction control of wind farms and their interaction with the atmospheric boundary layer W Munters, J Meyers Phil. Trans. R. Soc. A 375 (2091), 20160100, 2017 | 96 | 2017 |
Gravity waves and wind-farm efficiency in neutral and stable conditions D Allaerts, J Meyers Boundary-Layer Meteorology 166 (2), 269-299, 2018 | 95 | 2018 |