The Sandia 100-meter all-glass baseline wind turbine blade: SNL100-00 DT Griffith, TD Ashwill Informe Técnico, Sandia National Laboratories, 2011 | 346 | 2011 |
The effect of resin uptake on the flexural properties of compression molded sandwich composites D Cao, S Malakooti, VN Kulkarni, Y Ren, Y Liu, X Nie, D Qian, DT Griffith, ... Wind energy 25 (1), 71-93, 2022 | 217 | 2022 |
Bending and shear improvements in 3D-printed core sandwich composites through modification of resin uptake in the skin/core interphase region D Cao, D Bouzolin, H Lu, DT Griffith Composites Part B: Engineering 264, 110912, 2023 | 138 | 2023 |
Support conditions for experimental modal analysis TG Carne, DT Griffith, ME Casias Sound and Vibration 41 (6), 10-16, 2007 | 76 | 2007 |
Experimental and numerical study of high-order complex curvature mode shape and mode coupling on a three-bladed wind turbine assembly Y Chen, ASE Mendoza, DT Griffith Mechanical Systems and Signal Processing 160, 107873, 2021 | 74 | 2021 |
The SNL100-03 Blade: Design Studies with Flatback Airfoils for the Sandia 100-meter Blade. D Griffith, PW Richards Sandia National Lab.(SNL-NM), Albuquerque, NM (United States), 2014 | 66 | 2014 |
Attitude determination and autonomous on-orbit calibration of star tracker for the gifts mission P Singla, DT Griffith, JL Crassidis, JL Junkins Advances in the Astronautical Sciences 112, 19-38, 2002 | 59 | 2002 |
Control co-design of 13 MW downwind two-bladed rotors to achieve 25% reduction in levelized cost of wind energy LY Pao, DS Zalkind, DT Griffith, M Chetan, MS Selig, GK Ananda, CJ Bay, ... Annual Reviews in Control 51, 331-343, 2021 | 57 | 2021 |
Autonomous on-orbit calibration approaches for star tracker cameras DT Griffith, P Singla, JL Junkins Advances in the Astronautical Sciences 112, 39-57, 2002 | 55 | 2002 |
The SNL100-01 blade: carbon design studies for the Sandia 100-meter blade DT Griffith Sandia National Laboratories Technical Report, SAND2013-1178, 2013 | 53 | 2013 |
Structural health and prognostics management for the enhancement of offshore wind turbine operations and maintenance strategies DT Griffith, NC Yoder, B Resor, J White, J Paquette Wind Energy 17 (11), 1737-1751, 2014 | 47 | 2014 |
Structural dynamics testing and analysis for design evaluation and monitoring of heliostats DT Griffith, AC Moya, CK Ho, PS Hunter Energy Sustainability 54686, 567-576, 2011 | 45* | 2011 |
Multi‐fidelity digital twin structural model for a sub‐scale downwind wind turbine rotor blade M Chetan, S Yao, DT Griffith Wind Energy 24 (12), 1368-1387, 2021 | 44 | 2021 |
Impact of Modeling Approach on Flutter Predictions for Very LargeWind Turbine Blade Designs. BC Owens, BR Resor, JE Hurtado, D Griffith Sandia National Lab.(SNL-NM), Albuquerque, NM (United States), 2013 | 43 | 2013 |
Wind turbine rotor imbalance detection using nacelle and blade measurements J Kusnick, DE Adams, DT Griffith Wind Energy 18 (2), 267-276, 2015 | 41 | 2015 |
Aeroelastic modeling of large off-shore vertical-axis wind turbines: Development of the offshore wind energy simulation toolkit B Owens, JE Hurtado, JA Paquette, DT Griffith, MF Barone 54th aiaa/asme/asce/ahs/asc structures, structural dynamics, and materials …, 2013 | 40 | 2013 |
System-level design studies for large rotors DS Zalkind, GK Ananda, M Chetan, DP Martin, CJ Bay, KE Johnson, ... Wind Energy Science 4 (4), 595-618, 2019 | 39 | 2019 |
The SNL100-02 blade: advanced core material design studies for the Sandia 100-meter blade DT Griffith Sandia National Laboratories Technical Report, SAND2013-10162, 2013 | 39 | 2013 |
Experimental modal analysis of 9-meter research-sized wind turbine blades DT Griffith, TG Carne Structural Dynamics and Renewable Energy, Volume 1: Proceedings of the 28th …, 2011 | 39 | 2011 |
Large blade manufacturing cost studies using the Sandia blade manufacturing cost tool and Sandia 100-meter blades DT Griffith, W Johanns Sandia National Laboratories Technical Report, 1-34, 2013 | 37 | 2013 |