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1.
Design and Fabrication of cm-scale Tesla Turbines
by Krishnan, Vedavalli Gomatam, Ph.D.  University of California, Berkeley. 2015: 147 pages; 3720613.
2.
Experimental Characterization of Wind Turbine Blade Aerodynamic Noise
by Ingemanson, Megan Lynn, M.S.  University of California, Davis. 2013: 50 pages; 1539643.
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Numerical performance prediction for FAU's first generation ocean current turbine
by Vanrietvelde, Nicolas, M.S.  Florida Atlantic University. 2009: 133 pages; 1478428.
6.
Power management and frequency regulation for microgrid and smart grid: A real-time demand response approach
by Pourmousavi Kani, Seyyed Ali, Ph.D.  Montana State University. 2014: 440 pages; 3637101.
8.
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.
9.
Application of Advanced Power Electronics in Renewable Energy Sources and Hybrid Generating Systems
by Esmaili, Gholamreza, Ph.D.  The Ohio State University. 2006: 147 pages; 10835744.
10.
'It's a Magnifying Glass': The Communication of Power in a Remote Field Station
by McDermott, Victoria, M.A.  University of Alaska Fairbanks. 2019: 174 pages; 13856666.
11.
An Investigation into the Aerodynamics Surrounding Vertical-Axis Wind Turbines
by Parker, Colin M., Ph.D.  The George Washington University. 2018: 138 pages; 10687173.
12.
Design of airborne wind turbine and computational fluid dynamics analysis
by Anbreen, Faiqa, M.S.  California State University, Long Beach. 2015: 60 pages; 1606691.
13.
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.
14.
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.
15.
A hydrokinetic resource assessment of the Florida Current
by Smentek-Duerr, Alana E., Ph.D.  Florida Atlantic University. 2012: 236 pages; 3530686.
16.
Lifetime prediction modeling of airfoils for advanced power generation
by Karaivanov, Ventzislav Gueorguiev, Ph.D.  University of Pittsburgh. 2009: 129 pages; 3384974.
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Surface wind speed distributions: Implications for climate and wind power
by Capps, Scott Blair, Ph.D.  University of California, Irvine. 2009: 136 pages; 3380326.
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.
Management of energy and power using renewable energy sources based on ZigBee
by Guduru, Giridhar Reddy, M.S.  California State University, Long Beach. 2016: 44 pages; 10004167.
22.
A Better Steam Engine: Designing a Distributed Concentrating Solar Combined Heat and Power System
by Norwood, Zachary Mills, Ph.D.  University of California, Berkeley. 2011: 125 pages; 3469470.
23.
Tidal Power Arrays and the Coriolis Force with Array Design Considerations
by Miglietta, Victoria, Ph.D.  Florida Atlantic University. 2019: 72 pages; 27663391.
25.
Diffuser augmented wind turbine analysis code
by Carroll, Jonathan, M.S.  University of Kansas. 2014: 124 pages; 1558999.
26.
Vibration analysis for ocean turbine reliability models
by Wald, Randall David, Ph.D.  Florida Atlantic University. 2012: 156 pages; 3536593.
29.
Wind farm wake prediction using CFD
by Wolton, Peter R., M.S.  University of Colorado at Boulder. 2008: 150 pages; 1456694.
30.
Wind power modeling for a rural desalination project
by Alvarez Guerrero, Jose David, M.S.  Northern Arizona University. 2016: 120 pages; 10252090.
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