ANALYTICAL STUDY ON SEISMIC BEHAVIOUR OF HIGH RISE BUILDING USING DIFFERENT LOAD RESISTING METHOD

Kumar Anupam, Mr. Md. Tasleem
Page No: 93-103
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Height of the building has now become the primary point of focus of today’s world. Since buildings are getting taller and slender the primary concern of design engineers is shifting from gravity loads to lateral loads. The effect of lateral forces becomes more and more dominant as the building becomes taller and taller. These lateral forces can produce critical stresses in the structure, induce undesirable stresses and vibrations or cause excessive lateral sway of the structure. In this project a, G+16 storey building, along with shear wall and two different types of bracing is considered for analysis. The performance of building will be evaluated on the basis of following parameters –Storey displacement, Storey drift, Base shear. In this work, the shear walls and bracings are provided at corner with the overall analysis to be carried out using ETABS software.

Citations

APA: Kumar Anupam, Mr. Md. Tasleem (2025). ANALYTICAL STUDY ON SEISMIC BEHAVIOUR OF HIGH RISE BUILDING USING DIFFERENT LOAD RESISTING METHOD. DOI: 10.86493/VEREDAS.2025/V15I1/10

AMA: Kumar Anupam, Mr. Md. Tasleem. ANALYTICAL STUDY ON SEISMIC BEHAVIOUR OF HIGH RISE BUILDING USING DIFFERENT LOAD RESISTING METHOD. 2025. DOI: 10.86493/VEREDAS.2025/V15I1/10

Chicago: Kumar Anupam, Mr. Md. Tasleem. "ANALYTICAL STUDY ON SEISMIC BEHAVIOUR OF HIGH RISE BUILDING USING DIFFERENT LOAD RESISTING METHOD." Published 2025. DOI: 10.86493/VEREDAS.2025/V15I1/10

IEEE: Kumar Anupam, Mr. Md. Tasleem, "ANALYTICAL STUDY ON SEISMIC BEHAVIOUR OF HIGH RISE BUILDING USING DIFFERENT LOAD RESISTING METHOD," 2025, DOI: 10.86493/VEREDAS.2025/V15I1/10

ISNAD: Kumar Anupam, Mr. Md. Tasleem. "ANALYTICAL STUDY ON SEISMIC BEHAVIOUR OF HIGH RISE BUILDING USING DIFFERENT LOAD RESISTING METHOD." DOI: 10.86493/VEREDAS.2025/V15I1/10

MLA: Kumar Anupam, Mr. Md. Tasleem. "ANALYTICAL STUDY ON SEISMIC BEHAVIOUR OF HIGH RISE BUILDING USING DIFFERENT LOAD RESISTING METHOD." 2025, DOI: 10.86493/VEREDAS.2025/V15I1/10