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Information Journal Paper

Title

PROBABILISTIC SEISMIC PERFORMANCE ASSESSMENT OF BRICK MASONRY INFILLREINFORCED CONCRETE BUILDING

Pages

  263-274

Abstract

 The present study aims at investigation of seismic performance of brick masonry infill (BMI) reinforced concrete buildingthrough probabilistic approach. An existing seven storey reinforced concrete building situated in Indian seismic zone IV, which represents the typical properties of medium-rise non-ductile residential apartment buildings in India has been considered. Nonlinear seismic behavior of building with and without BMI is studied to evaluate seismic performance. Probabilisticseismic demand model (PSDM), fragility curves and damage probability matrix has been developed. Analytical fragilitycurves using incremental dynamic analysis have been developed. Sixteen natural ground motion records from PEER strongmotion database are used to study the ground motion variability. Incremental dynamic analysis is performed and the maximuminterstory drift is obtained as a response parameter for all simulations. The PSDM parameters are calculated usingregression analysis for numerical models. The variation in the PSDM parameters is studied. Discrete probability matricesare developed for different damage stages. Finally, the effects of brick masonry infill on seismic performance are discussed.

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  • Cite

    APA: Copy

    PATIL, V.S., & TANDE, S.N.. (2018). PROBABILISTIC SEISMIC PERFORMANCE ASSESSMENT OF BRICK MASONRY INFILLREINFORCED CONCRETE BUILDING. INTERNATIONAL JOURNAL OF ADVANCED STRUCTURAL ENGINEERING, 10(3), 263-274. SID. https://sid.ir/paper/319905/en

    Vancouver: Copy

    PATIL V.S., TANDE S.N.. PROBABILISTIC SEISMIC PERFORMANCE ASSESSMENT OF BRICK MASONRY INFILLREINFORCED CONCRETE BUILDING. INTERNATIONAL JOURNAL OF ADVANCED STRUCTURAL ENGINEERING[Internet]. 2018;10(3):263-274. Available from: https://sid.ir/paper/319905/en

    IEEE: Copy

    V.S. PATIL, and S.N. TANDE, “PROBABILISTIC SEISMIC PERFORMANCE ASSESSMENT OF BRICK MASONRY INFILLREINFORCED CONCRETE BUILDING,” INTERNATIONAL JOURNAL OF ADVANCED STRUCTURAL ENGINEERING, vol. 10, no. 3, pp. 263–274, 2018, [Online]. Available: https://sid.ir/paper/319905/en

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