2008•Proceedings of the Institution of Civil Engineers - Ground ImprovementRequires access

Subgrade modulus of geocell-reinforced sand foundations

Sujit Kumar Dash, P. D. T. Reddy, S. T. G. Raghukanth

Open publisher page 37 citations

Abstract

This paper presents the subgrade modulus aspect of geocell-reinforced sand foundation beds, where most of the reported work deals with bearing capacity. Through a series of laboratory model tests the influence on the subgrade modulus of different parameters, such as the geometry and position of placement of the geocell layer, has been examined. With the provision of geocell.reinforcement, the subgrade modulus of sand bed can be increased as high as eight times compared with the unreinforced case. A multiple-variable data regression is performed on the experimental data to establish a relation between the effect of reinforcing in terms of subgrade modulus improvement factor and the parameters that control the scheme of reinforcement. This equation will be of use in predicting the subgrade modulus of geocell-reinforced sand beds, and also in efficient utilisation of geocell reinforcement in increasing the performance of sand foundations.

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What this paper is about

This paper presents the subgrade modulus aspect of geocell-reinforced sand foundation beds, where most of the reported work deals with bearing capacity. Through a series of laboratory model tests the influence on the subgrade modulus of different parameters, such as the geometry and position of placement of the geocell layer, has been examined. With the provision of geocell.reinforcement, the subgrade modulus of sand bed can be increased as high as eight times compared with the unreinforced case. A multiple-variable data regression is performed on the experimental data to establish a relation between the effect of reinforcing in terms of subgrade modulus improvement factor and the parameters that control the scheme of reinforcement. This equation will be of use in predicting the subgrade modulus of geocell-reinforced sand beds, and also in efficient utilisation of geocell reinforcement in increasing the performance of sand foundations.

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Available abstract

This paper presents the subgrade modulus aspect of geocell-reinforced sand foundation beds, where most of the reported work deals with bearing capacity. Through a series of laboratory model tests the influence on the subgrade modulus of different parameters, such as the geometry and position of placement of the geocell layer, has been examined. With the provision of geocell.reinforcement, the subgrade modulus of sand bed can be increased as high as eight times compared with the unreinforced case. A multiple-variable data regression is performed on the experimental data to establish a relation between the effect of reinforcing in terms of subgrade modulus improvement factor and the parameters that control the scheme of reinforcement. This equation will be of use in predicting the subgrade modulus of geocell-reinforced sand beds, and also in efficient utilisation of geocell reinforcement in increasing the performance of sand foundations.

Key concepts: Subgrade, Geotechnical engineering, Modulus, Reinforcement, Bearing capacity, Foundation (evidence), Geology, Materials science

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