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1.
National Security and Wind Farms: Can They Co-Exist?
by Jameson, Sharoiha Pualani Kanehailua, LL.M.  The George Washington University. 2013: 77 pages; 1545818.
2.
Experimental Characterization of Wind Turbine Blade Aerodynamic Noise
by Ingemanson, Megan Lynn, M.S.  University of California, Davis. 2013: 50 pages; 1539643.
3.
Exploring the Role of the Atmosphere on Wind-Energy Production: From Turbine Wakes to Varability of Wind Speed
by Lee, Cheuk Yi Joseph, Ph.D.  University of Colorado at Boulder. 2018: 196 pages; 10790207.
4.
On the interaction of wind energy with climate and weather
by Barrie, Daniel Bennett, Ph.D.  University of Maryland, College Park. 2010: 244 pages; 3443420.
5.
Surface wind speed distributions: Implications for climate and wind power
by Capps, Scott Blair, Ph.D.  University of California, Irvine. 2009: 136 pages; 3380326.
6.
Dynamic Federalism and Wind Farm Siting
by Burke, Hugh Brendan, LL.M.  The George Washington University. 2014: 93 pages; 1556469.
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Grounding design for personal safety of a large scale wind power plant
by Goree, Adam Tracker, M.S.  Colorado School of Mines. 2016: 120 pages; 10164243.
11.
Urban Wind Power Assessment A Case Study of the San Francisco Public Utilities Commission Building
by Patel, Ashishkumar, M.S.  University of California, Davis. 2011: 190 pages; 1507174.
12.
The Impact of Coastal Terrain on Offshore Wind and Implications for Wind Energy
by Strobach, Edward Justin, Ph.D.  University of Maryland, Baltimore County. 2017: 262 pages; 10617333.
13.
On the Use of Wind Power and Pumped-storage Hydro for Blackout Restoration and Resilience
by Su, Jinshun, M.S.  The George Washington University. 2019: 105 pages; 13884193.
15.
Wind Speed Preview Measurement and Estimation for Feedforward Control of Wind Turbines
by Simley, Eric J., Ph.D.  University of Colorado at Boulder. 2015: 256 pages; 3721887.
16.
Diffuser augmented wind turbine analysis code
by Carroll, Jonathan, M.S.  University of Kansas. 2014: 124 pages; 1558999.
19.
Wind Tunnel Testing of Microtabs and Microjets for Active Load Control of Wind Turbine Blades
by Cooperman, Aubryn Murray, Ph.D.  University of California, Davis. 2012: 95 pages; 3555290.
20.
A 2D CFD Simulation for Wind Turbine Wakes Using a Porous Element
by Acker, Matthew R., M.S.  Northern Arizona University. 2018: 133 pages; 10791441.
21.
Closing the Achievement Gap Through Arts Integration
by Panagopulos, Kathleen, Ph.D.  Notre Dame of Maryland University. 2015: 167 pages; 3687902.
22.
Grid current control methods for MV wind energy conversion systems
by Yin, Hang, Ph.D.  Technische Universitaet Berlin (Germany). 2019: 27604615.
24.
Carrying Capacity of Two-way Coupled Earth–Human Systems
by Motesharrei, Safa, Ph.D.  University of Maryland, College Park. 2018: 320 pages; 10977350.
25.
Grid Power Quality with FACTS Devices and Renewable Energy Sources Using Deep Learning Algorithms
by Chitsazan, Mohammad Amin, Ph.D.  University of Nevada, Reno. 2019: 103 pages; 13881645.
27.
Optimal investment in wind and solar power in California
by Fripp, Matthias, Ph.D.  University of California, Berkeley. 2008: 250 pages; 3388273.
28.
Knowing which way the wind blows: Weather observation, belief and practice in Native Oklahoma
by Peppler, Randy A., Ph.D.  The University of Oklahoma. 2011: 298 pages; 3490570.
29.
Wind farm wake prediction using CFD
by Wolton, Peter R., M.S.  University of Colorado at Boulder. 2008: 150 pages; 1456694.
30.
Optimal Sizing and Operation of Energy Storage Systems to Mitigate Intermittency of Renewable Energy Resources
by Naziri Moghaddam, Iman, Ph.D.  The University of North Carolina at Charlotte. 2018: 120 pages; 10791200.
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