2018•International Journal of Geotechnical EngineeringRequires access

Ultimate bearing capacity of shallow strip foundation under eccentrically inclined load—a critical assessment

Rabi Narayan Behera, C. R. Patra, Braja M. Das, Nagaratnam Sivakugan

Open publisher page 5 citations

Abstract

An empirical non-dimensional reduction factor has been developed in this paper using 192 laboratory model test results of the previous studies made by authors for a strip foundation supported by sand and subjected to eccentrically inclined load for both types of loading, i.e. line of load application inclined towards the centre line of the foundation (partially compensated case) and away from the centre line of the foundation (reinforced case). The reduction factor is the ratio of the ultimate inclined load per unit area of the foundation subjected to an eccentrically inclined load (i.e. partially compensated or reinforced loading) to the ultimate bearing capacity of the same foundation subjected to a centric vertical load at the same embedment ratio, D f/B. The developed reduction factor has been compared with those based on the earlier bearing capacity studies in this area available in the literature. The comparison seems to be reasonably good.)

About this research paper

What this paper is about

An empirical non-dimensional reduction factor has been developed in this paper using 192 laboratory model test results of the previous studies made by authors for a strip foundation supported by sand and subjected to eccentrically inclined load for both types of loading, i.e. line of load application inclined towards the centre line of the foundation (partially compensated case) and away from the centre line of the foundation (reinforced case). The reduction factor is the ratio of the ultimate inclined load per unit area of the foundation subjected to an eccentrically inclined load (i.e. partially compensated or reinforced loading) to the ultimate bearing capacity of the same foundation subjected to a centric vertical load at the same embedment ratio, D f/B. The developed reduction factor has been compared with those based on the earlier bearing capacity studies in this area available in the literature. The comparison seems to be reasonably good.)

Why it matters

OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

An empirical non-dimensional reduction factor has been developed in this paper using 192 laboratory model test results of the previous studies made by authors for a strip foundation supported by sand and subjected to eccentrically inclined load for both types of loading, i.e. line of load application inclined towards the centre line of the foundation (partially compensated case) and away from the centre line of the foundation (reinforced case). The reduction factor is the ratio of the ultimate inclined load per unit area of the foundation subjected to an eccentrically inclined load (i.e. partially compensated or reinforced loading) to the ultimate bearing capacity of the same foundation subjected to a centric vertical load at the same embedment ratio, D f/B. The developed reduction factor has been compared with those based on the earlier bearing capacity studies in this area available in the literature. The comparison seems to be reasonably good.)

Key concepts: Embedment, Foundation (evidence), Bearing capacity, Geotechnical engineering, Shallow foundation, Structural engineering, Reduction (mathematics), Ultimate load

Related papers

Back to paper searchBrowse research topicsOriginal source
Ultimate bearing capacity of shallow strip foundation under eccentrically inclined load—a critical assessment — Research Paper | ScholarLens