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Dynamic characteristics of multistory buildings
Effects of shear deformation between floors, joint rotation, over-all flexure, and ground compliance are considered; joint rotation and over-all flexure are evaluated over wide range of building characteristics with simply determined indices; "period synthesis" concept and "pseudo-stiffness procedure" are proposed to enable determination of periods, mode shapes and stiffnesses with consideration of joint rotation, over-all flexure and ground compliance while performing simple labor-saving analyses for assumed rigid-floor shear buildings; first three modes of vibration are considered in elastic free vibration; buildings and models are symmetric in plan without torsional coupling.
Dynamic characteristics of multistory buildings
Effects of shear deformation between floors, joint rotation, over-all flexure, and ground compliance are considered; joint rotation and over-all flexure are evaluated over wide range of building characteristics with simply determined indices; "period synthesis" concept and "pseudo-stiffness procedure" are proposed to enable determination of periods, mode shapes and stiffnesses with consideration of joint rotation, over-all flexure and ground compliance while performing simple labor-saving analyses for assumed rigid-floor shear buildings; first three modes of vibration are considered in elastic free vibration; buildings and models are symmetric in plan without torsional coupling.
Dynamic characteristics of multistory buildings
ASCE -- Proc (J Structural Div)
Blume, J.A. (author)
1968
26 pages
Article (Journal)
English
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