<efrbr:recordSet xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:efrbr="http://vfrbr.info/efrbr/1.1" xmlns:efrbr-work="http://vfrbr.info/efrbr/1.1/work" xmlns:efrbr-expression="http://vfrbr.info/efrbr/1.1/expression" xmlns:efrbr-manifestation="http://vfrbr.info/efrbr/1.1/manifestation" xmlns:efrbr-person="http://vfrbr.info/efrbr/1.1/person" xmlns:efrbr-corporateBody="http://vfrbr.info/efrbr/1.1/corporateBody" xmlns:efrbr-concept="http://vfrbr.info/efrbr/1.1/concept" xmlns:efrbr-structure="http://vfrbr.info/efrbr/1.1/structure" xmlns:efrbr-responsible="http://vfrbr.info/efrbr/1.1/responsible" xmlns:efrbr-subject="http://vfrbr.info/efrbr/1.1/subject" xmlns:efrbr-other="http://vfrbr.info/efrbr/1.1/other" xsi:schemaLocation="http://vfrbr.info/efrbr/1.1 http://vfrbr.info/schemas/1.1/efrbr.xsd"><efrbr:entities><efrbr-work:work identifier="http://purl.tuc.gr/dl/dias/883D4DEC-DE07-4207-B23D-FD114DD16756"><efrbr-work:titleOfTheWork>Kinematic distress of pipelines subjected to secondary seismic fault rupture</efrbr-work:titleOfTheWork></efrbr-work:work><efrbr-expression:expression identifier="http://purl.tuc.gr/dl/dias/883D4DEC-DE07-4207-B23D-FD114DD16756"><efrbr-expression:titleOfTheExpression>Kinematic distress of pipelines subjected to secondary seismic fault rupture</efrbr-expression:titleOfTheExpression><efrbr-expression:formOfExpression vocabulary="DIAS:TYPES">
            Peer-Reviewed Journal Publication
            Δημοσίευση σε Περιοδικό με Κριτές
         </efrbr-expression:formOfExpression><efrbr-expression:dateOfExpression type="issued">2024-06-07</efrbr-expression:dateOfExpression><efrbr-expression:dateOfExpression type="published">2022</efrbr-expression:dateOfExpression><efrbr-expression:languageOfExpression vocabulary="iso639-1">en</efrbr-expression:languageOfExpression><efrbr-expression:summarizationOfContent>Fault rupture is a complex phenomenon and substantial secondary ruptures have been observed. Such ruptures may cause damage to pipelines laying in the vicinity of main faults without intersecting them. The current study investigates numerically the response of buried steel pipelines crossing secondary faults, following a decoupled approach. Initially, a 3D numerical model is used to calculate soil displacements, which subsequently are applied to another numerical model for the calculation of pipe distress. Sandy soil response is realistically simulated by adopting an elastoplastic Mohr-Coulomb constitutive model with isotropic strain softening. Both models are compared with experimental results for singe fault rupture. The impact of several parameters is examined, such as fault type, soil layer properties and thickness, and different pipe routes with respect to the faults. Useful conclusions are drawn regarding the applicability of the proposed numerical approach as well as the severity of pipe distress under secondary faulting.</efrbr-expression:summarizationOfContent><efrbr-expression:contextForTheExpression>This research is co-financed by Greece and the European Union (European Social Fund - ESF) through the Operational Programme “Human Resources Development, Education and Lifelong Learning” in the context of the project “Strengthening Human Resources Research Potential via Doctorate Research” (MIS-5000432), implemented by the State Scholarships Foundation (ΙΚΥ).</efrbr-expression:contextForTheExpression><efrbr-expression:useRestrictionsOnTheExpression type="creative-commons">http://creativecommons.org/licenses/by/4.0/</efrbr-expression:useRestrictionsOnTheExpression><efrbr-expression:note type="journal name">Soil Dynamics and Earthquake Engineering</efrbr-expression:note><efrbr-expression:note type="journal volume">152</efrbr-expression:note></efrbr-expression:expression><efrbr-person:person identifier="http://users.isc.tuc.gr/~dchatzidakis"><efrbr-person:nameOfPerson vocabulary="TUC:LDAP">
            Chatzidakis Dionysios
            Χατζηδακης Διονυσιος
         </efrbr-person:nameOfPerson></efrbr-person:person><efrbr-person:person identifier="http://users.isc.tuc.gr/~itsobanakis"><efrbr-person:nameOfPerson vocabulary="TUC:LDAP">
            Tsompanakis Ioannis
            Τσομπανακης Ιωαννης
         </efrbr-person:nameOfPerson></efrbr-person:person><efrbr-person:person identifier="B9710E02-3F2A-4F00-AEA9-C2DDBAB2C4C1"><efrbr-person:nameOfPerson vocabulary="">
            Psarropoulos Prodromos N.
         </efrbr-person:nameOfPerson></efrbr-person:person><efrbr-corporateBody:corporateBody identifier="https://v2.sherpa.ac.uk/id/publisher/30"><efrbr-corporateBody:nameOfTheCorporateBody vocabulary="S/R:PUBLISHERS">
            Elsevier
         </efrbr-corporateBody:nameOfTheCorporateBody></efrbr-corporateBody:corporateBody><efrbr-concept:concept identifier="74146AE3-F3FB-40D4-9D1C-B754FD7020D0"><efrbr-concept:termForTheConcept>
            Buried pipelines
         </efrbr-concept:termForTheConcept></efrbr-concept:concept><efrbr-concept:concept identifier="67CE89F3-1CFC-46F7-93D0-5BA25F6269A9"><efrbr-concept:termForTheConcept>
            Seismic fault
         </efrbr-concept:termForTheConcept></efrbr-concept:concept><efrbr-concept:concept identifier="CDCB3BD1-7AF3-44EE-AB57-788395A1438A"><efrbr-concept:termForTheConcept>
            Secondary fault
         </efrbr-concept:termForTheConcept></efrbr-concept:concept><efrbr-concept:concept identifier="61FA67CF-35A1-42EC-9D76-DE08636BDDCD"><efrbr-concept:termForTheConcept>
            Kinematic distress
         </efrbr-concept:termForTheConcept></efrbr-concept:concept><efrbr-concept:concept identifier="6777BDC3-04F3-4527-B255-E87A8CA04AF7"><efrbr-concept:termForTheConcept>
            Numerical modeling
         </efrbr-concept:termForTheConcept></efrbr-concept:concept><efrbr-concept:concept identifier="2AF6A4BB-83C6-4E11-AF53-33A7F053EB74"><efrbr-concept:termForTheConcept>
            Finite element method
         </efrbr-concept:termForTheConcept></efrbr-concept:concept><efrbr-concept:concept identifier="6E4845B6-56DA-43D2-822C-2058C5FB78C8"><efrbr-concept:termForTheConcept>
            Soil-pipe interaction
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