Simulation of a Large-Scale Shake Table Test Using Pm4Sand Plasticity Model to Study Liquefaction-Induced Response

Deep Foundations Institute
Fahim Bhuiyan Ramin Motamed
Organization:
Deep Foundations Institute
Pages:
12
File Size:
1247 KB
Publication Date:
Oct 31, 2023

Abstract

Damage dealt with by some recent major earthquakes has raised concerns among the geotechnical engineering community to delve more into the area of soil liquefaction. As part of research funded by Pacific Earthquake Engineering Research (PEER), a large-scale shake table test on a laminar soil box was carried out at the University of California, San Diego, to investigate the effect of liquefaction-induced ground motion on a shallow foundation. In this study, a 2D numerical finite difference simulation of the baseline test was conducted in FLAC using the PM4Sand plasticity model. Some general behavior of sand layers during liquefaction including generation of excess pore water pressure, development of shear and volumetric strain, and their relative contribution to the total settlement were investigated. The model predicted the average final foundation and free-field settlements to be 21.94 cm (measured value 26.05 cm) and 12.36 cm in heave (measured heave value 1.57 cm) respectively. The shear strain appeared to govern the total settlement during seismic excitation compared to volumetric strain, during strong ground motion, while the latter became more apparent after the ground motion had subsided.
Citation

APA: Fahim Bhuiyan Ramin Motamed  (2023)  Simulation of a Large-Scale Shake Table Test Using Pm4Sand Plasticity Model to Study Liquefaction-Induced Response

MLA: Fahim Bhuiyan Ramin Motamed Simulation of a Large-Scale Shake Table Test Using Pm4Sand Plasticity Model to Study Liquefaction-Induced Response. Deep Foundations Institute, 2023.

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