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Landslides are the major geotechnical problems in highway projects.
Accurate discrete element modeling of geotechnical problems requires the use of millions of particles.
Finite Element Method (FEM) is well suited for numerical study of advanced geotechnical problems.
Distinct Element Method (DEM) techniques are commonly used in the simulation of geotechnical problems.
The surface disposal of such waste can create several environmental and geotechnical problems.
ABAQUS is a powerful finite element computer package that can be used for modeling geotechnical problems.
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The geotechnical problem is proposed to be solved simultaneously.
The whole numerical procedure is applied on one classical geotechnical problem: the ultimate bearing capacity of stone column reinforced foundations.
The design of earth retaining walls, abutments, mechanically stabilized earth walls, and reinforced soil slopes is a challenging geotechnical problem (Holtz et al. 2001).
The behaviour of a complex geotechnical problem is measured in each constructions step and these measurements are compared to simulation results.
From the outcome, this paper demonstrates that when geotechnical uncertainties and their effects on soil responses are appropriately accounted for, they can lead to an improved understanding and modelling of a practical geotechnical problem such as the ground improvement by columnar inclusions.
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