Copyright © 2026 Authors retain the copyright of this article. This article is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
@article{197485,
author = {Amol Sawant and Avanti Bhosale and Dhiraj Kativale},
title = {Study of Influenced of Building Height And Seismic Zone on Foundation Design In Soft Soil},
journal = {International Journal of Innovative Research in Technology},
year = {2026},
volume = {12},
number = {11},
pages = {6901-6914},
issn = {2349-6002},
url = {https://ijirt.org/article?manuscript=197485},
abstract = {The increasing demand for vertical expansion in urban areas has led to the proliferation of mid-rise and high-rise buildings, especially in regions where land availability is limited. In countries like India, which lies in a seismically active zone, the safety and stability of such structures under earthquake loading is of paramount importance. Among the critical aspects of structural safety is the design and performance of the foundation system, particularly when the building is situated on soft soil.
Foundation systems in such environments must be carefully engineered to resist both static and dynamic loads while minimizing differential settlement and tilt. Another important factor influencing seismic response is building height. This increased flexibility can result in larger story drifts and greater base shears during an earthquake. Conversely, low-rise buildings (e.g., G+6) are stiffer and may respond differently under similar seismic conditions.
This study presents the development of a STAAD Pro. Model for G+6 buildings in seismic zones III and V with soft soil conditions requires a detailed approach focusing on seismic design and soil structure interaction. The higher seismicity (Zone V) combined with soft soil demand and design approach, particularly a Dyanamic Analysis Method like Response Spectrum Analysis. Model the beams and columns as frame members. Assign appropriate material properties and section properties. Model the supports as fixed initially. However, since the soil is soft, the supports as spring supports initially. The seismic load varies significantly between the specified zones and building heights. Sesmic zone factor for Zone II -0.16 and Zone V -0.36. For zone V, using a Special Moment Resisting Frame with Response Reduction Factor R-5 is strongly recommended to ensure ductility and better seismic performance.},
keywords = {Seismic zone, Response Reduction Factor, Soft soil, Dyanamic Analysis, STAAD PRO software, SAFE software.},
month = {April},
}
Submit your research paper and those of your network (friends, colleagues, or peers) through your IPN account, and receive 800 INR for each paper that gets published.
Join NowNational Conference on Sustainable Engineering and Management - 2024 Last Date: 15th March 2024
Submit inquiry