Post-Liquefaction Settlement Reduction Due to Vertical Reinforcement of Aggregate Piers

Deep Foundations Institute
Francisco Humire
Organization:
Deep Foundations Institute
Pages:
8
File Size:
1773 KB
Publication Date:
Oct 7, 2024

Abstract

Contemporary design criteria for ground improvement supporting structures frequently specify a maximum post-liquefaction reconsolidation settlement value. Typically, those settlement values are evaluated using methods developed to represent free field conditions in the absence of ground improvement. Centrifuge and full-scale field tests have shown that arrays of dense gravel columns reinforce the ground leading to a reduction of post-liquefaction settlements relative to free field values. Therefore, free field settlement estimations that do not account for the vertical reinforcement effects provided by columnar ground improvements lead to conservative estimates of post-liquefaction settlements. Gingery (2019) proposed a constitutive model able to capture the development of post-liquefaction volumetric deformations and presented its implementation in a finite difference numerical model. The model proposed by Gingery (2019) has the advantage over more simplified approaches in that it more rigorously captures many of the physical processes including porewater pressure dissipation, gradual regain of soil stiffness and strength, downdrag, and stress redistribution. The objective of this work is to further validate the constitutive model proposed by Gingery (2019) and investigate the post-liquefaction settlement reduction due to vertical reinforcement effects for different subsurface profiles. This is done by (1) validating the constitutive model against more recent centrifuge and full-scale field tests, and (2) quantifying the post-liquefaction settlement reduction that is attributable to vertical reinforcement effects for different site conditions. Our simulations show a reduction of 15 to 20% of post-liquefaction settlements relative to free field values when considering vertical reinforcement effects.
Citation

APA: Francisco Humire  (2024)  Post-Liquefaction Settlement Reduction Due to Vertical Reinforcement of Aggregate Piers

MLA: Francisco Humire Post-Liquefaction Settlement Reduction Due to Vertical Reinforcement of Aggregate Piers. Deep Foundations Institute, 2024.

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