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Free Vibrations of Horizontally Curved Beams Resting on Winkler Type Foundation
The differential equations governing the free, out-of-plane vibrations of the horizontally non-circular curved beams resting on Winkler type foundation, including the effects of rotatory inertia and shear deformation, are derived and solved numerically. The lowest four natural frequencies are calculated for the parabolic curved beams with hinged-hinged, hinged-clamped and clamped-clamped ends.
Free Vibrations of Horizontally Curved Beams Resting on Winkler Type Foundation
The differential equations governing the free, out-of-plane vibrations of the horizontally non-circular curved beams resting on Winkler type foundation, including the effects of rotatory inertia and shear deformation, are derived and solved numerically. The lowest four natural frequencies are calculated for the parabolic curved beams with hinged-hinged, hinged-clamped and clamped-clamped ends.
Free Vibrations of Horizontally Curved Beams Resting on Winkler Type Foundation
Lee, Byoung Koo (author) / Mo, Jeong Man (author) / Jin, Tae Ki (author) / Lee, Jae Man (author)
Eighth International Conference on Computing in Civil and Building Engineering (ICCCBE-VIII) ; 2000 ; Stanford, California, United States
2000-08-04
Conference paper
Electronic Resource
English
Free Vibrations of Horizontally Curved Beams Resting on Winkler Type Foundation
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