Title of article :
Probabilistic evaluation of effect of column stiffness on seismic performance of steel plate shear walls
Author/Authors :
Qu، نويسنده , , Bing and Guo، نويسنده , , Xuhua and Chi، نويسنده , , Haoyan and Pollino، نويسنده , , Michael، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
11
From page :
169
To page :
179
Abstract :
The lateral force resistance and hysteretic energy dissipation capacity of steel plate shear walls (SPSWs) are primarily provided through yielding of the infill steel plates attached to the boundary frame of the system. As such, it is desirable to achieve uniform distribution of infill plate yielding at every story of an SPSW system during an earthquake event. This paper investigates the effect of column stiffness on infill plate yielding distributions in representative two-story and six-story SPSWs. Specially considered in the investigation are the uncertainties existing in infill plate strength and lateral force distributions along the vertical direction. Three probabilistic evaluation methods including the Monte Carlo method, the Latin Hypercube Sampling method, and the Rosenblueth’s 2K + 1 Point Estimate method, are considered. It is shown that all methods are stable and effective for this investigation; however, the Rosenblueth’s 2K + 1 Point Estimate method requires the least computational cost. The results from the probabilistic evaluation show that increasing column stiffness and story ductility capacity can be effective to achieve infill plate yielding at each story of an SPSW. However, the minimum column stiffness required in the codes in North America does not necessarily lead to infill plate yielding at every story of a multi-story SPSW.
Keywords :
Steel Plate Shear Wall , Column stiffness , Seismic performance , Probabilistic evaluation
Journal title :
Engineering Structures
Serial Year :
2012
Journal title :
Engineering Structures
Record number :
1647335
Link To Document :
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