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Atmospheric sciences / Wind / Electric power / Electrical generators / Energy conversion / High-altitude wind power / Airborne wind turbine / Jet stream / KiteGen / Wind power / Energy / Meteorology


Energies 2009, 2, [removed]; doi:[removed]en20200307 OPEN ACCESS
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Document Date: 2010-06-03 20:11:40


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City

Tokyo / Sao Paulo / Seoul / Mexico City / New York / /

Continent

Asia / North America / Europe / South America / Antarctica / Africa / /

Country

Japan / United States / Australia / /

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Event

Natural Disaster / /

Facility

California State University / /

IndustryTerm

altitude wind power technology / Mechanical energy / ground-based and aloft-based electricity generation approaches / wind energy / larger devices / electricity / altitude devices / altitude technologies / electricity generation / kinetic energy / unit turbine area generating electricity / altitude technology / baseload electricity generation / interconnected high-altitude devices / large scale electricity generation / electricity demand / supplied electricity / altitude wind power devices / altitude wind devices / altitude wind power technologies / altitude device / energy availability / energy / /

NaturalFeature

Southern Ocean / Arabian Peninsula / Indian Ocean / /

Organization

Department of Geological and Environmental Sciences / Carnegie Institution of Washington / USA Department of Global Ecology / California State University / Department of Energy / Stanford / /

Person

Ben Shepard / Ken Caldeira / Cristina L. Archer / /

/

Position

Author / representative / /

ProvinceOrState

New York / /

Region

northern Africa / Caribbean / Indian Ocean / western South America / north Africa / central United States / /

Technology

high-altitude technologies / high-altitude wind power technologies / high-altitude wind power technology / high-altitude technology / /

URL

www.mdpi.com/journal/energies / /

SocialTag