Soil–Structure Interaction Effect on Seismic Force Evaluation of RC Framed Buildings with Various Shapes of Shear Wall: As Per IS 1893 and IBC
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Date
2015
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Publisher
Springer India sanjiv.goswami@springer.co.in
Abstract
Behaviour of a structure is altered by the interaction amid the structure, foundation and the soil medium below the foundation. This mutual dependent behaviour of structure and soil is called as soil–structure interaction (SSI). Hence, it is not realistic to analyse a structure as per conventional structural design practice which considers the base to be fixed. Comparative study on seismic provisions of Indian seismic code, IS 1893:2002 (IS) and International building code IBC:2006 (IBC) is carried out in present study to look into the effect of soil flexibility on variation in natural period, spectral acceleration coefficient, base shear and storey shear. Multi-storey reinforced concrete framed buildings of varying height with various shapes of shear walls over raft foundation were considered. Analysis of 3D SSI models with three different shear wall shapes founded on four different soil types which are classified based on shear wave velocity has been carried out using finite element software LS DYNA. Study shows the significant effects of SSI in altering the seismic response of structure. It also shows that the base shear obtained as per IBC are higher than the IS values and the corrugated shape of shear wall experience the lowest base shear compared to cylindrical and rectangular shape shear walls for buildings with aspect ratio below 3. © 2014, Indian Geotechnical Society.
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Keywords
Aspect ratio, Building codes, Finite element method, Reinforced concrete, Seismic design, Seismic response, Seismology, Shear walls, Shear waves, Soils, Structural design, Walls (structural partitions), Wave propagation, Base shear, Design response spectrum, Finite element software, International Building Code, Seismic code, Shear wave velocity, Soil flexibility, Spectral acceleration, Shear flow, multistorey building, reinforced concrete, seismic design, seismic response, shear stress, soil-structure interaction, structural response, three-dimensional modeling
Citation
Indian Geotechnical Journal, 2015, 45, 3, pp. 254-266
