Dragonfly: A rotorcraft lander concept for scientific exploration at Titan RD Lorenz, EP Turtle, JW Barnes, MG Trainer, DS Adams, KE Hibbard, ... Johns Hopkins APL Technical Digest 34 (3), 14, 2018 | 264 | 2018 |
Scaled ice accretion experiments on a rotating wind turbine blade Y Han, J Palacios, S Schmitz Journal of Wind Engineering and Industrial Aerodynamics 109, 55-67, 2012 | 178* | 2012 |
Guidelines for volume force distributions within actuator line modeling of wind turbines on large-eddy simulation-type grids PK Jha, MJ Churchfield, PJ Moriarty, S Schmitz Journal of Solar Energy Engineering 136 (3), 031003, 2014 | 143 | 2014 |
Effect of icing roughness on wind turbine power production P Blasco, J Palacios, S Schmitz Wind Energy 20 (4), 601-617, 2017 | 59 | 2017 |
Actuator curve embedding–an advanced actuator line model PK Jha, S Schmitz Journal of Fluid Mechanics 834, R2, 2018 | 54 | 2018 |
Accuracy of state-of-the-art actuator-line modeling for wind turbine wakes P Jha, M Churchfield, P Moriarty, S Schmitz 51st AIAA Aerospace Sciences Meeting including the New Horizons Forum and …, 2013 | 51 | 2013 |
Aerodynamics of wind turbines: a physical basis for analysis and design S Schmitz John wiley & sons, 2020 | 50 | 2020 |
A parallelized coupled Navier-Stokes/vortex-panel solver S Schmitz, JJ Chattot | 43 | 2005 |
Modeling wind turbine tower and nacelle effects within an actuator line model MJ Churchfield, S Lee, S Schmitz, Z Wang 33rd Wind Energy Symposium, 0214, 2015 | 40 | 2015 |
Computational investigation of a boundary-layer-ingestion propulsion system BT Blumenthal, AA Elmiligui, KA Geiselhart, RL Campbell, MD Maughmer, ... Journal of aircraft 55 (3), 1141-1153, 2018 | 39 | 2018 |
Energetics of rotary-wing exploration of Titan JW Langelaan, S Schmitz, J Palacios, RD Lorenz 2017 IEEE Aerospace Conference, 1-11, 2017 | 38 | 2017 |
Characterization of three-dimensional effects for the rotating and parked NREL Phase VI wind turbine S Schmitz, JJ Chattot | 34 | 2006 |
A coupled Navier–Stokes/Vortex–Panel solver for the numerical analysis of wind turbines S Schmitz, JJ Chattot Computers & fluids 35 (7), 742-745, 2006 | 34 | 2006 |
Coupled simulations of atmospheric turbulence-modified ship airwakes and helicopter flight dynamics R Thedin, MP Kinzel, JF Horn, S Schmitz Journal of Aircraft 56 (2), 812-824, 2019 | 33 | 2019 |
Effects of atmospheric turbulence unsteadiness on ship airwakes and helicopter dynamics R Thedin, SM Murman, J Horn, S Schmitz Journal of Aircraft 57 (3), 534-546, 2020 | 32 | 2020 |
Inviscid circulatory-pressure field derived from the incompressible Navier–Stokes equations S Schmitz, JG Coder AIAA journal 53 (1), 33-41, 2015 | 29 | 2015 |
XTURB-PSU A Wind Turbine Design and Analysis Tool S Schmitz http://www.aero.psu.edu/Faculty_Staff/schmitz/XTurb/XTurb.html, 2012 | 29 | 2012 |
Drag decomposition using partial-pressure fields in the compressible Navier–Stokes equations S Schmitz AIAA journal 57 (5), 2030-2038, 2019 | 27 | 2019 |
An investigation of the behavior of a coaxial rotor in descent and ground effect MP Kinzel, JK Cornelius, S Schmitz, JL Palacios, JW Langelaan, ... AIAA Scitech 2019 Forum, 1098, 2019 | 27 | 2019 |
Unraveling the mysteries of turbulence transport in a wind farm PK Jha, EPN Duque, JL Bashioum, S Schmitz Energies 8 (7), 6468-6496, 2015 | 26 | 2015 |