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    Evaluating the damage in steel MRF under near field earthquakes from a performance based design viewpoint

    , Article Procedia Engineering ; Volume 14 , 2011 , Pages 3111-3118 ; 18777058 (ISSN) Rofooei, F. R ; Imani, R ; Sharif University of Technology
    2011
    Abstract
    This study is about the performance assessment of steel moment resisting frame structures under nearfield strong ground motions. A number of 3 and 9-story, 3-D structural models being designed using the strength method, are considered. A set of 7 near-field earthquake records, scaled according to ASCE- 7(05), are considered for nonlinear dynamic time history analyses using OpenSees program. Park and Ang damage index is considered for quantitative measurement of the performance of structural models. Maximum values of inter-story drifts along with the local and global damage indices are determined to be used in the performance assessment process. Considering the average results of different... 

    An efficient performance-based seismic design method for reinforced concrete frames

    , Article Earthquake Engineering and Structural Dynamics ; Volume 41, Issue 4 , 2012 , Pages 663-679 ; 00988847 (ISSN) Hajirasouliha, I ; Asadi, P ; Pilakoutas, K ; Sharif University of Technology
    Abstract
    In this paper, a practical method is developed for performance-based design of RC structures subjected to seismic excitations. More efficient design is obtained by redistributing material from strong to weak parts of a structure until a state of uniform deformation or damage prevails. By applying the design algorithm on 5, 10 and 15-storey RC frames, the efficiency of the proposed method is initially demonstrated for specific synthetic and real seismic excitations. The results indicate that, for similar structural weight, designed structures experience up to 30% less global damage compared with code-based design frames. The method is then developed to consider multiple performance objectives...