Inicio  /  Buildings  /  Vol: 5 Par: 3 (2015)  /  Artículo
ARTÍCULO
TITULO

Correlating Stiffness and Shear Lag Behavior with Brace Configuration of Tall Truss Tube Buildings

Himanshu Gaur and Ravindra Kumar Goliya    

Resumen

As the height of buildings increases, effect of shear lag also becomes considerable in the design of high rise buildings. In this paper, shear lag effect in tall buildings of heights, i.e., 120, 96, 72, 48 and 36 stories of which aspect ratio ranges from 3 to 10 is studied. Tube in tube structural system with façade bracing is used for designing the building of height 120 story. It is found that bracing system considerably reduces the shear lag effect and hence increases the building stiffness to withstand lateral loads. Different geometric patterns of the bracing system are considered. The best effective geometric configuration of a bracing system is concluded in this study. Lateral force, as wind load, is applied on the buildings as it is the most dominant lateral force for such heights. Wind load is set as per Indian standard code of Practice IS 875 Part 3. For analysis purposes, the SAP2000 software program is used.

 Artículos similares

       
 
Andrea Roncari, Filippo Gobbi and Cristiano Loss    
Simplified seismic design procedures mostly recommend the adoption of rigid floor diaphragms when forming a building?s lateral force-resisting structural system. While rigid behavior is compatible with many reinforced concrete or composite steel-concrete... ver más
Revista: Buildings