Grand challenges in the science of wind energy P Veers, K Dykes, E Lantz, S Barth, CL Bottasso, O Carlson, A Clifton, ... Science 366 (6464), eaau2027, 2019 | 694 | 2019 |
An intercomparison of large-eddy simulations of the stable boundary layer RJ Beare, MK Macvean, AAM Holtslag, J Cuxart, I Esau, JC Golaz, ... Boundary-Layer Meteorology 118, 247-272, 2006 | 637 | 2006 |
CASES-99: A comprehensive investigation of the stable nocturnal boundary layer GS Poulos, W Blumen, DC Fritts, JK Lundquist, J Sun, SP Burns, C Nappo, ... Bulletin of the American Meteorological Society 83 (4), 555-582, 2002 | 631 | 2002 |
Nocturnal low-level jet characteristics over Kansas during CASES-99 RM Banta, RK Newsom, JK Lundquist, YL Pichugina, RL Coulter, L Mahrt Boundary-Layer Meteorology 105, 221-252, 2002 | 448 | 2002 |
Local and mesoscale impacts of wind farms as parameterized in a mesoscale NWP model AC Fitch, JB Olson, JK Lundquist, J Dudhia, AK Gupta, J Michalakes, ... Monthly Weather Review 140 (9), 3017-3038, 2012 | 393 | 2012 |
Atmospheric stability affects wind turbine power collection S Wharton, JK Lundquist Environmental Research Letters 7 (1), 014005, 2012 | 279 | 2012 |
Costs and consequences of wind turbine wake effects arising from uncoordinated wind energy development JK Lundquist, KK DuVivier, D Kaffine, JM Tomaszewski Nature Energy 4 (1), 26-34, 2019 | 228 | 2019 |
Southward shift of the global wind energy resource under high carbon dioxide emissions KB Karnauskas, JK Lundquist, L Zhang Nature Geoscience 11 (1), 38-43, 2018 | 209 | 2018 |
Initial results from a field campaign of wake steering applied at a commercial wind farm–Part 1 P Fleming, J King, K Dykes, E Simley, J Roadman, A Scholbrock, ... Wind Energy Science 4 (2), 273-285, 2019 | 204 | 2019 |
Assessing atmospheric stability and its impacts on rotor‐disk wind characteristics at an onshore wind farm S Wharton, JK Lundquist Wind Energy 15 (4), 525-546, 2012 | 192 | 2012 |
Quantifying wind turbine wake characteristics from scanning remote sensor data ML Aitken, RM Banta, YL Pichugina, JK Lundquist Journal of Atmospheric and Oceanic Technology 31 (4), 765-787, 2014 | 178 | 2014 |
Implementation of a nonlinear subfilter turbulence stress model for large-eddy simulation in the Advanced Research WRF model JD Mirocha, JK Lundquist, B Kosović Monthly Weather Review 138 (11), 4212-4228, 2010 | 177 | 2010 |
Crop wind energy experiment (CWEX): observations of surface-layer, boundary layer, and mesoscale interactions with a wind farm DA Rajewski, ES Takle, JK Lundquist, S Oncley, JH Prueger, TW Horst, ... Bulletin of the American Meteorological Society 94 (5), 655-672, 2013 | 167 | 2013 |
Mesoscale influences of wind farms throughout a diurnal cycle AC Fitch, JK Lundquist, JB Olson Monthly Weather Review 141 (7), 2173-2198, 2013 | 166 | 2013 |
Development of a coupled groundwater–atmosphere model RM Maxwell, JK Lundquist, JD Mirocha, SG Smith, CS Woodward, ... Monthly Weather Review 139 (1), 96-116, 2011 | 159 | 2011 |
The Perdigão: peering into microscale details of mountain winds HJS Fernando, J Mann, J Palma, JK Lundquist, RJ Barthelmie, ... Bulletin of the American Meteorological Society 100 (5), 799-819, 2019 | 153 | 2019 |
Using machine learning to predict wind turbine power output A Clifton, L Kilcher, JK Lundquist, P Fleming Environmental research letters 8 (2), 024009, 2013 | 146 | 2013 |
An immersed boundary method for the weather research and forecasting model KA Lundquist, FK Chow, JK Lundquist Monthly Weather Review 138 (3), 796-817, 2010 | 146 | 2010 |
An immersed boundary method enabling large-eddy simulations of flow over complex terrain in the WRF model KA Lundquist, FK Chow, JK Lundquist Monthly Weather Review 140 (12), 3936-3955, 2012 | 135 | 2012 |
Land–atmosphere interaction research, early results, and opportunities in the Walnut River Watershed in southeast Kansas: CASES and ABLE MA LeMone, RL Grossman, RL Coulter, ML Wesley, GE Klazura, ... Bulletin of the American Meteorological Society 81 (4), 757-780, 2000 | 133 | 2000 |