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Book ChapterDOI

Mitigation of Soil Liquefaction Under Strip Footing by Densification: A Numerical Investigation

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TLDR
In this paper, the constitutive behavior of the sand is modeled using PM4Sand and the depth of densified column below the footing is varied in order to assess its influence on the performance of the footing during seismic shaking.
Abstract
Simple procedures are available to capture the characteristic response of loose sand under cyclic loading in free field conditions. However, the applicability of these procedures to evaluate the performance of the geotechnical structures overlying the saturated granular soil remains as a concern since the responses exhibited by the soil are very complex in these cases. One such case involving the strip foundation on top of liquefiable sand is numerically studied. The constitutive behavior of the sand is modeled using PM4Sand. In addition to the basic case, soil densification which has been a traditional remediation measure against liquefaction of saturated loose sand deposits is considered to mitigate the deformations of the strip footing. The depth of densified column below the footing is varied in order to assess its influence on the performance of the footing during seismic shaking. The settlement and excess pore water pressure corresponding to the five different cases of numerical model including an untreated model and four other models with different vertical extent are presented and its implications on the response of the footing are discussed.

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Citations
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Journal ArticleDOI

Shaking table tests on wall-type gravel and rubber drains as a liquefaction countermeasure in silty sand

TL;DR: In this article, the seismic performance of wall-type gravel and rubber drains as a liquefaction countermeasure in silty sand has been addressed using a series of 1-g shaking table tests.
Book ChapterDOI

LiqNumeric. A GUI-Based MATLAB Code for Estimating the Dynamic Behavior of no Cohesive Soils Under Seismic Excitations

Michele Greet
TL;DR: LiqNumeric as mentioned in this paper is a GUI developed in MATLAB that uses the open-source computational platform OpenSees to evaluate the dynamic behavior of non-cohesive soils subjected to seismic excitation.
References
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Journal ArticleDOI

Seismic response of shallow foundation on liquefiable sand

TL;DR: In this paper, the authors conducted eight centrifuge model experiments to study the mechanism of liquefaction-induced settlement of a shallow foundation, as well as the effectiveness of sand densification by vibrocompaction under the footing.
Journal ArticleDOI

Foundation Liquefaction Countermeasures for Earth Embankments

TL;DR: In this article, a centrifuge-testing program is conducted to assess the earthquake performance of countermeasure retrofit techniques for a liquefiable foundation under an existing embankment.
Journal ArticleDOI

Influence of Buildings on Potential Liquefaction Damage

TL;DR: In this paper, the potential for liquefaction below a building is evaluated by treating the soil as if it were in the free field, and modifications to the typical free-field analysis procedure to account for changes in the vertical stress, horizontal shear stresses, and overconsolidation ratio due to a structure are suggested.
Journal ArticleDOI

Numerical analysis of embankment foundation liquefaction countermeasures

TL;DR: In this article, computational simulations are presented for a unique series of centrifuge tests conducted to assess the performance of liquefaction countermeasure techniques, and the dynamic performance of these tests is analyzed.
Journal ArticleDOI

Embankment dam on liquefiable foundation - dynamic behavior and densification remediation

TL;DR: In this paper, the authors investigated the effect of foundation densification on the seismic behavior of a zoned embankment dam with saturated sandy soil foundation under moderate earthquake conditions and found that relatively small and isolated zones of loose material within a densified volume of soil may not impair the overall effectiveness of treatment and do not necessarily result in damaging displacements.
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