Multi-scale probabilistic performance-based earthquake engineering

A framework for multiscale analyses

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Polynomial chaos expansion

for Uncertainty Quantification

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Nonlinear simulation of site response considering liquefaction

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Random fields for spatial temporal analysis and uncertainty quantification

Theory and Application

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Dynamic Hydro-Mechanical Coupling

MultiPhysics Analysis of Dynamic Hydro-Mechanical Coupling Considering Material Plasticity

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Evaluation of liquefaction with multiscale numerical framework

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Large-scale geohazard prediction with multiscale random fields

Liquefaction evaluation in an earthquake prone eara

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Clemson University's Hadoop Cluster: Cypress

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Experimental and numerical study

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Artificial neural network for large-scale liquefaction prediction

An artificial neural network for predicting liquefaction hazard in a large region

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Liquefaction and many other geotechnical engineering problems are multiscale in nature because of inho- mogeneities existing at different length-scales in geomaterials.

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Theoretical analysis on debonding problems and numerical valiadation

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