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contributor authorLopez-Caballero Fernando;Khalil Christina
date accessioned2019-02-26T07:54:18Z
date available2019-02-26T07:54:18Z
date issued2018
identifier otherAJRUA6.0000957.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4250184
description abstractThe major cause of earthquake damage to an embankment is the liquefaction of the soil foundation that induces ground-level deformations. The aim of this paper is to assess numerically the effect of the liquefaction-induced settlement of the soil foundation on a levee due to real earthquakes. The seismic vulnerability is evaluated in terms of analytical fragility curves constructed on the basis of nonlinear dynamic finite-element (FE) analysis. However, FE analysis can be expensive because of the very large number of simulations needed for an accurate assessment of the system failure behavior. This problem is addressed by building a Gaussian process (GP) emulator to represent the output of the expensive FE model. A comparison with the FE reference results suggests that the proposed GP model works well and can be successfully used as a predictive tool to compute the induced damage on the levee. Findings also illustrate clearly the importance and the advantages of an adequate definition of the input parameters to build the GP model.
publisherAmerican Society of Civil Engineers
titleVulnerability Assessment for Earthquake Liquefaction–Induced Settlements of an Embankment Using Gaussian Processes
typeJournal Paper
journal volume4
journal issue2
journal titleASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part A: Civil Engineering
identifier doi10.1061/AJRUA6.0000957
page4018010
treeASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part A: Civil Engineering:;2018:;Volume ( 004 ):;issue: 002
contenttypeFulltext


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