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Arquivos : Textos y Trabajos : Tesis
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Arquivos de Arquitectura
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Adicionado por: |
Daniela Altamirano
(A reputação do usuário é Mala) |
Fecha: |
Wed, 08 Sep 2021 |
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Descrição do Autor |
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The nonlinear static procedure (NSP), based on pushover analysis, has become a favourite tool for use
in practical applications for building evaluation and design verification. The NSP is, however, restricted
to single-mode response. It is therefore valid for low-rise buildings where the behaviour is dominated
by the fundamental vibration mode. It is well recognized that the seismic demands derived from the
conventional NSP are greatly underestimated in the upper storeys of tall buildings, in which higher-
mode contributions to the response are important. This paper presents a new pushover procedure
which can take into account higher-mode effects. The procedure, which has been named the consecutive
modal pushover (CMP) procedure, utilizes multi-stage and single-stage pushover analyses. The final
structural responses are determined by enveloping the results of multi-stage and single-stage pushover
analyses. The procedure is applied to four special steel moment-resisting frames with different heights.
A comparison between estimates from the CMP procedure and the exact values obtained by nonlinear
response history analysis (NL-RHA), as well as predictions from modal pushover analysis (MPA), has been
carried out. It is demonstrated that the CMP procedure is able to effectively overcome the limitations of
traditional pushover analysis, and to accurately predict the seismic demands of tall buildings. |
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