Testing and Optimizing Rammed Stone Columns Design as a Soil Improvement Method on Soft Soils for MSE Walls Foundations

Deep Foundations Institute
Bernardo J. Jiménez Vega Edy L. T. Montalvan
Organization:
Deep Foundations Institute
Pages:
10
File Size:
1358 KB
Publication Date:
Sep 8, 2021

Abstract

Rammed stone columns and similar reinforcement systems are used worldwide more frequently as a cost-effective method for improvement of foundations on soft soils. The effectiveness of the treatment method is evidenced by the increase in bearing capacity and reduction of compressibility of the treated ground. In this study, two job sites with over 500 stone columns were studied. On both jobs sites, shallow soft silty soils were found and stone columns were designed to support the foundations of MSE walls, which serve as abutments for viaducts. In order to verify the soil improvement efficiency CPT tests were performed before and after the construction of stone columns, also plate load tests were performed on both job sites to verify the deformation modulus of the stone columns. From CPT data it was observed an increase up to 30% of sleeve friction and 20% of tip resistance, which demonstrated a higher deformation modulus maintaining the same strength in the soil after stone columns construction. The plate load tests yield load-deformation curves which indicated that the original assumed modulus was conservative. As a result of these findings, optimization of the settlement reduction ratios was conducted using the modified values of deformation modulus for the soil and stone column, obtaining a reduction up to 30% of stone columns for further job sites with similar soil conditions.
Citation

APA: Bernardo J. Jiménez Vega Edy L. T. Montalvan  (2021)  Testing and Optimizing Rammed Stone Columns Design as a Soil Improvement Method on Soft Soils for MSE Walls Foundations

MLA: Bernardo J. Jiménez Vega Edy L. T. Montalvan Testing and Optimizing Rammed Stone Columns Design as a Soil Improvement Method on Soft Soils for MSE Walls Foundations. Deep Foundations Institute, 2021.

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