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51 | Jeremy Lewis, New Mexico Energy, Minerals, and Natural Resources Department, e-mail to Ross Pumfrey, Texas<br />

Commission on Environmental Quality, September 26, 2011.<br />

52 | Western Governors’ Association and U.S. Department of Energy, “Western Renewable Energy Zones-Phase 1<br />

Report,” June 2009, p. 12, http://www.westgov.org/component/joomdoc/cat_view/95-reports/96-2009.<br />

53 | Ross Pumfrey, Texas Commission on Environmental Quality, telephone conversation with Michael McDermott, New<br />

Mexico Energy, Minerals, and Natural Resources Department, September 26, 2011.<br />

54 | New Mexico Energy, Minerals, and Natural Resources Department, “Annual Report 2010”, p. 34,<br />

http://www.emnrd.state.nm.us/main/documents/EMNRD-2010-Annual-Report.pdf.<br />

55 | RS&H Engineering, prepared for the Public Utility Commission of Texas, “CREZ Progress Report No. 3,” April 2011, p. 1,<br />

http://www.texascrezprojects.com/page29601131.aspx.<br />

56 | National Renewable Energy Laboratory, “Utility-Scale Energy Technology Capacity Factors,”<br />

http://www.nrel.gov/analysis/tech_cap_factor.html.<br />

57 | Utility Wind Interest Group, “Wind Power Impacts on Electric-Power-System Operating Costs, Summary and<br />

Perspective on Work Done to Date,” November 2003, http://www.uwig.org/windpower2004.pdf.<br />

58 | The National Academies, “Environmental Impacts of Wind-Energy Projects,” 2007,<br />

http://<strong>del</strong>s.nas.edu/resources/static-assets/materials-based-on-reports/reports-in-brief/wind_energy_fnal.pdf.<br />

59 | Somnath Baidya Roy and Justin J. Traiteur, “Impacts of Wind Farms on Surface Air Temperatures,” Proceedings of<br />

the National Academy of Sciences, Vol. 107, No. 42 (2010): 17899-17904,<br />

http://www.pnas.org/content/early/2010/10/12/1000493107.full.pdf.<br />

60 | C. Wang and R.G. Prinn, “Potential Climatic Impacts and Reliability of Very Large-Scale Wind Farms,”<br />

Atmospheric Chemistry and Physics, Vol. 10 (2010): 2053-2061,<br />

http://www.atmos-chem-phys.org/10/2053/2010/acp-10-2053-2010.pdf.<br />

61 | Vestas, Life Cycle Assessment (LCA),<br />

http://www.vestas.com/en/about-vestas/sustainability/wind-turbines-and-the-environment/life-cycle-assessment-%28lca%29.aspx.<br />

62 | California Energy Commission, “Overview of Wind Energy in California,” http://www.energy.ca.gov/wind/overview.html.<br />

63 | U.S. Fish and Wildlife Service, “Interim Guidance on Avoiding and Minimizing Wildlife Impacts from Wind Turbines”,<br />

May 8, 2003, http://www.fws.gov/habitatconservation/wind.pdf.<br />

64 | George C. Ledec, Kennan W. Rapp, and Roberto G. Aiello, The World Bank, Latin America and Caribbean Region,<br />

“Greening the Wind: Environmental and Social Considerations for Wind Power Development in Latin America and<br />

Beyond”, Energy Sector Management Assistance Program Report, June 2011,<br />

http://www-wds.worldbank.org/external/default/WDSContentServer/WDSP/IB/2011/07/26/000333038_20110726003<br />

613/Rendered/PDF/634800v10WP0Gr00BOX361518B00PUBLIC0.pdf.<br />

65 | “Wind Power in View: Wind Turbines, Aesthetics, & Public Acceptance,” Martin J. Pasqualetti, Paul Gipe, and Robert<br />

W. Righter, eds., San Diego: Academic Press, 2002.<br />

66 | American Wind Energy Association, “Air Space, Radar, and Wind Energy”<br />

http://www.awea.org/learnabout/publications/upload/04-10_Radar_factsheet.pdf.<br />

93

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