Effect of excavations on the bearing capacity of adjacent foundations using three-dimensional upper bound limit analysis method

Author:

Hamzezadeh Nakhjavani Mohammad Hossein,Askari Faradjollah,Farzaneh Orang

Abstract

Purpose One of the primary challenges associated with excavation near buildings is the significant decrease in the bearing capacity of nearby foundations during the initial stages before the stabilization of the excavation wall. This study aims to investigate the correlation between excavation height and foundation-bearing capacity under actual field conditions. Design/methodology/approach This paper uses a three-dimensional rotational failure mechanism to propose a novel method for estimating foundation-bearing capacity using the upper bound limit analysis approach. Findings The study delineates two distinct zones in the excavation height versus bearing capacity diagram. Initially, there is a significant reduction in foundation-bearing capacity at the onset of excavation, with decreases of up to 80% compared to its undisturbed state. Within a specific range of excavation heights, the bearing capacity remains relatively constant until reaching a critical height. Beyond this threshold, the entire soil mass behind the excavation wall becomes unstable. The critical excavation height is notably influenced by the soil's internal friction angle, excavation slope angle and soil cohesion parameter. Notably, when the ratio of excavation height to foundation width is less than 0.4, changes in slope angle have no significant impact on bearing capacity. Originality/value The bearing capacity estimates derived from the method proposed in this paper are deemed to reflect real-world scenarios closely compared to existing methodologies.

Publisher

Emerald

Reference24 articles.

1. Three-dimensional bearing capacity of shallow foundations adjacent to slopes using discrete element method;International Journal of Engineering,2010

2. Askari, F. (1999), “Three-dimensional analysis of homogeneous and nonhomogeneous slopes in static and dynamic mode using upper bound theorem of limit analysis”, Ph.D. Dissertation Thesis, University of Tehran, Iran (in Persian).

3. Loaded areas on cohesive slopes;Journal of Geotechnical Engineering,1983

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