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|a eng
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|a 621.548
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|a Kaza, Krishna Rao V.
|9 318653
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|a Nonlinear aerolastic equations of motion of twisted, nonuniform, flexible horizontal-axis wind turbine blades /
|c Krisha Rao V. Kaza
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|a Cleveland :
|b National Aeronautics and Space Administration,
|c 1980
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|a Washington :
|b United States Department of Energy,
|c 1980
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|a 68 p. :
|b figuras
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|a DOE/NASA
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|a Informe/número de patente NASA CR-159502
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|a DOE/NASA/3139-1
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|a The second-degree nonlinear equations of motion for a flexible, twisted, nonuniform, horizontal axis wind turbine blade were developed using Hamilton's principle. A mathematical ordering scheme which was consistent with the assumption of a slender beam was used to discard some higher-order elastic and inertial terms in the second-degree nonlinear equations. The blade aerodynamic loading which was employed accounted for both wind shear and tower shadow and was obtained from strip theory based on a quasi-steady approximation of two-dimensional, incompressible, unsteady, airfoil theory. The resulting equations had periodic coefficients and were suitable for determining the aeroelastic stability and response of large horizontal-axis wind turbine blades.
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|a ENERGIA EOLICA
|9 265786
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|a TURBINAS EOLICAS
|9 271955
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|a PRODUCCION DE ENERGIA
|9 281974
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|a CONVERSION DE ENERGIA
|9 318654
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|a ECUACIONES NO LINEALES
|9 275583
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|a National Aeronautics and Space Administration
|9 318667
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|a United States Department of Energy
|9 268561
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|u https://ntrs.nasa.gov/citations/19800018275
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|a DON
|b 44637 Donación Argüelles
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|2 CDU - Clasificación Decimal Universal
|c LIB
|6 _
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|c 31451
|d 31451
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|a SKV
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