A collaborative numerical simulation-soft computing approach for earth dams first impoundment modeling
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Date
2023
Authors
Behzad Shakouri
Mirali Mohammadi
Mir Jafar Sadegh Safari
Mohammad Amin Hariri-Ardebili
Journal Title
Journal ISSN
Volume Title
Publisher
ELSEVIER SCI LTD
Open Access Color
Green Open Access
No
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Publicly Funded
No
Abstract
Uncertainty quantification plays a crucial role in the design monitoring and risk assessment of earth dams. To reduce the computational burden we employ a combination of finite difference method and soft computing techniques to investigate material uncertainties in earth dams during the initial impoundment stage. The findings of sensitivity analysis with the Tornado diagram indicate that key material properties such as dry density elasticity modulus friction angle and Poisson's ratio significantly influence the displacements and stress analysis. In our study we explore four variants of extreme learning machines (ELMs): the standalone ELM hybridized versions with the improved grey wolf optimizer algorithm ant colony optimization for continuous domains and artificial bee colony. These methods are assessed across various training sizes to predict multiple parameters including horizontal and vertical displacements stresses and the factor of safety (FoS). The hybridized ELM with the improved grey wolf optimizer algorithm emerges as the superior choice for most of the response variables. A minimum of 200 numerical simulations is required to establish a stable and accurate meta-model with an average prediction error of less than 3% for responses and the FoS.
Description
Keywords
Soft Computing, Optimization Algorithm, Grey Wolf Optimizer, Earth Dam, FLAC2D, RELIABILITY-ANALYSIS, COLONY OPTIMIZATION, CONCRETE DAMS, GRAVITY DAMS, REGRESSION, MACHINE, IDENTIFICATION, DEFORMATION, PREDICTION, PARAMETERS, Soft Computing, Grey Wolf Optimizer, Earth Dam, Optimization Algorithm, FLAC2D
Fields of Science
Citation
WoS Q
Scopus Q

OpenCitations Citation Count
5
Source
Computers and Geotechnics
Volume
164
Issue
Start Page
105814
End Page
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Citations
CrossRef : 3
Scopus : 10
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Mendeley Readers : 10
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