Please use this identifier to cite or link to this item: https://hdl.handle.net/1959.11/61349
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dc.contributor.authorKeivanian, Farshiden
dc.contributor.authorChiong, Raymonden
dc.contributor.authorKashani, Ali Ren
dc.contributor.authorGandomi, Amir Hen
dc.date.accessioned2024-07-10T00:58:50Z-
dc.date.available2024-07-10T00:58:50Z-
dc.date.issued2023-06-
dc.identifier.citationJournal of Computational Science, v.70en
dc.identifier.issn1877-7511en
dc.identifier.issn1877-7503en
dc.identifier.urihttps://hdl.handle.net/1959.11/61349-
dc.description.abstract<p>In earthquake-prone zones, the seismic performance of reinforced concrete cantilever (RCC) retaining walls is a critical factor. In this study, the seismic performance was investigated using horizontal and vertical pseudo-static coefficients. To tackle RCC weights and forces resulting from these earth pressures, 26 constraints for structural strengths and geotechnical stability along with 12 geometric variables are associated with each design. These constraints and design variables form a constraint optimization problem with a 12-dimensional solution space. To conduct effective search and produce sustainable and economical RCC designs that are robust against earthquake hazards, a novel adaptive fuzzy-based metaheuristic algorithm is proposed. The proposed method divides the search space into sub-regions and establishes exploration, information sharing, and exploitation search capabilities based on its novel search components. Further, fuzzy inference systems are employed to address parameterization and computational cost evaluation issues. It was found that the proposed algorithm can achieve low-cost, low-weight, and low-CO2 emission RCC designs under nine seismic conditions when compared with several classical and best-performing design optimizers.</p>en
dc.languageenen
dc.publisherElsevier Ltden
dc.relation.ispartofJournal of Computational Scienceen
dc.titleA fuzzy adaptive metaheuristic algorithm for identifying sustainable, economical, and earthquake-resistant reinforced concrete cantilever retaining wallsen
dc.typeJournal Articleen
dc.identifier.doi10.1016/j.jocs.2023.101978en
local.contributor.firstnameFarshiden
local.contributor.firstnameRaymonden
local.contributor.firstnameAli Ren
local.contributor.firstnameAmir Hen
local.profile.schoolSchool of Science & Technologyen
local.profile.emailrchiong@une.edu.auen
local.output.categoryC1en
local.record.placeauen
local.record.institutionUniversity of New Englanden
local.publisher.placeUnited Kingdomen
local.identifier.runningnumber101978en
local.peerreviewedYesen
local.identifier.volume70en
local.contributor.lastnameKeivanianen
local.contributor.lastnameChiongen
local.contributor.lastnameKashanien
local.contributor.lastnameGandomien
dc.identifier.staffune-id:rchiongen
local.profile.orcid0000-0002-8285-1903en
local.profile.roleauthoren
local.profile.roleauthoren
local.profile.roleauthoren
local.profile.roleauthoren
local.identifier.unepublicationidune:1959.11/61349en
dc.identifier.academiclevelAcademicen
dc.identifier.academiclevelAcademicen
dc.identifier.academiclevelAcademicen
dc.identifier.academiclevelAcademicen
local.title.maintitleA fuzzy adaptive metaheuristic algorithm for identifying sustainable, economical, and earthquake-resistant reinforced concrete cantilever retaining wallsen
local.output.categorydescriptionC1 Refereed Article in a Scholarly Journalen
local.search.authorKeivanian, Farshiden
local.search.authorChiong, Raymonden
local.search.authorKashani, Ali Ren
local.search.authorGandomi, Amir Hen
local.uneassociationNoen
dc.date.presented2023-
local.atsiresearchNoen
local.sensitive.culturalNoen
local.year.published2023en
local.year.presented2023en
local.subject.for20204602 Artificial intelligenceen
local.profile.affiliationtypeExternal Affiliationen
local.profile.affiliationtypeExternal Affiliationen
local.profile.affiliationtypeExternal Affiliationen
local.profile.affiliationtypeExternal Affiliationen
local.date.moved2024-07-22en
Appears in Collections:Journal Article
School of Science and Technology
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