• Title of article

    An iterative process for pushover analysis of double unsymmetric-plan low- and medium-rise buildings under bi-directional excitation

  • Author/Authors

    Poursha، M. نويسنده Sahand University of Technology Poursha, M.

  • Issue Information
    فصلنامه با شماره پیاپی سال 2013
  • Pages
    15
  • From page
    100
  • To page
    114
  • Abstract
    Double- unsymmetric-plan medium-rise buildings subjected to bi-directional seismic excitation are complex structures where higher-mode effects in plan and elevation are important in estimating the seismic responses using nonlinear static or pushover analysis. Considering two horizontal components of the ground motions makes the problem more intricate. This paper presents a method for nonlinear static analysis of double unsymmetric-plan low- and medium-rise buildings subjected to the two horizontal components of ground motions. To consider bi-directional seismic excitation in pushover analyses, the proposed method utilizes an iterative process until displacements at a control node (centre of mass at the roof level) progressively reach the predefined target displacements in both horizontal directions. In the case of medium-rise buildings, continuous implementation of modal pushover analyses is used to take higher-mode effects into account. To illustrate the applicability and to appraise the accuracy of the proposed method, it is applied to the 4- and 10-storey torsionally-stiff and torsionally-flexible buildings as representative of low- and medium-rise buildings, respectively. For the purpose of comparison, modal pushover analysis (MPA) is also implemented considering the two horizontal components of the ground motions. The results indicate that the proposed method and the MPA procedure can compute the seismic demands of double unsymmetric-plan low- and medium-rise buildings with reasonable accuracy; however, seismic responses resulting from the proposed method deteriorate at the flexible edge of the torsionally-flexible buildings
  • Journal title
    International JOurnal of Civil Engineering(Transaction A: Civil Engineering)
  • Serial Year
    2013
  • Journal title
    International JOurnal of Civil Engineering(Transaction A: Civil Engineering)
  • Record number

    1799203