2014•International Journal of Research in Engineering and TechnologyOpen access

NON LINEAR STATIC PUSHOVER ANALYSIS OF IRREGULAR SPACE FRAME STRUCTURE WITH AND WITHOUT T SHAPED COLUMNS

M Govind

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Abstract

The static pushover analysis is becoming a popular tool for seismic performance evaluation of existing and new structures.The expectation is that the pushover analysis will provide adequate information on seismic demands imposed by the design ground motion on the structural system and its components.The recent advent of structural design for a particular level of earthquake performance, such as immediate post-earthquake occupancy, (termed as performance based earthquake engineering), has resulted in guidelines such as ATC-40, FEMA-356 and standards such as ASCE-41.Among the different types of analysis, pushover analysis comes forward because of its optimal accuracy, efficiency and ease of use.In the present study, the behaviour of G+20 storied R.C frame buildings (H shape in plan, with and without T shaped column) subjected to earthquake, located in seismic zone III is discussed briefly using ETABS software.Gravity loads and laterals loads as per IS 1893-2002 are applied on the structure and it is designed using IS 456.Displacement control pushover analysis is carried out.

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The static pushover analysis is becoming a popular tool for seismic performance evaluation of existing and new structures.The expectation is that the pushover analysis will provide adequate information on seismic demands imposed by the design ground motion on the structural system and its components.The recent advent of structural design for a particular level of earthquake performance, such as immediate post-earthquake occupancy, (termed as performance based earthquake engineering), has resulted in guidelines such as ATC-40, FEMA-356 and standards such as ASCE-41.Among the different types of analysis, pushover analysis comes forward because of its optimal accuracy, efficiency and ease of use.In the present study, the behaviour of G+20 storied R.C frame buildings (H shape in plan, with and without T shaped column) subjected to earthquake, located in seismic zone III is discussed briefly using ETABS software.Gravity loads and laterals loads as per IS 1893-2002 are applied on the structure and it is designed using IS 456.Displacement control pushover analysis is carried out.

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Available abstract

The static pushover analysis is becoming a popular tool for seismic performance evaluation of existing and new structures.The expectation is that the pushover analysis will provide adequate information on seismic demands imposed by the design ground motion on the structural system and its components.The recent advent of structural design for a particular level of earthquake performance, such as immediate post-earthquake occupancy, (termed as performance based earthquake engineering), has resulted in guidelines such as ATC-40, FEMA-356 and standards such as ASCE-41.Among the different types of analysis, pushover analysis comes forward because of its optimal accuracy, efficiency and ease of use.In the present study, the behaviour of G+20 storied R.C frame buildings (H shape in plan, with and without T shaped column) subjected to earthquake, located in seismic zone III is discussed briefly using ETABS software.Gravity loads and laterals loads as per IS 1893-2002 are applied on the structure and it is designed using IS 456.Displacement control pushover analysis is carried out.

Key concepts: Space frame, Frame (networking), Structural engineering, Space (punctuation), Computer science, Engineering, Telecommunications, Operating system

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