Analysis and Design of Symmetrical Buildings Considering Dynamic Pounding Effect in Residential Apartments
Keywords:
Seismic Pounding, ETABS, Time History Analysis, Dynamic Analysis, Residential Buildings, Storey Drift, Storey Shear, Overturning Moment, Seismic Gap, Earthquake Engineering.Abstract
Earthquakes often cause severe structural damage, particularly in densely populated urban areas where adjacent
buildings are separated by inadequate seismic gaps. During strong ground motion, neighbouring buildings having
different dynamic characteristics may vibrate out of phase, resulting in seismic pounding, which can significantly
increase structural damage, member forces, and the possibility of partial or complete collapse. This study
investigates the dynamic pounding effect between symmetrical reinforced concrete residential apartment
buildings using ETABS. Two G+15 symmetrical buildings separated by 20 mm and 25 mm seismic gaps were
modeled and analyzed under earthquake loading. Dynamic analysis was carried out using time history analysis
with the El Centro earthquake record as the input ground motion, while static analysis was also performed for
comparison under medium soil conditions in accordance with IS 1893 (Part 1):2002. The structural response was
evaluated by comparing important parameters including storey displacement, storey drift, storey shear, storey
moments, and overturning moments for pounding and non-pounding conditions. The analytical results indicate
that insufficient separation between adjacent buildings considerably increases seismic response, whereas
providing adequate seismic gaps effectively minimizes pounding effects and improves structural safety. The study
demonstrates that dynamic analysis provides a more realistic assessment of pounding behaviour and can assist
engineers in selecting suitable separation distances for earthquake-resistant building design.










