Please use this identifier to cite or link to this item: https://scholarhub.balamand.edu.lb/handle/uob/6895
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dc.contributor.advisorGhannoum, Mariaen_US
dc.contributor.authorHamdan, Carla Rafehen_US
dc.date.accessioned2023-07-25T06:08:54Z-
dc.date.available2023-07-25T06:08:54Z-
dc.date.issued2023-
dc.identifier.urihttps://scholarhub.balamand.edu.lb/handle/uob/6895-
dc.descriptionIncludes bibliographical references (p. 65-68)en_US
dc.description.abstractThis thesis aims to predict tensile strength in concrete beams subjected to three-point bending loading and having different dimensions. Experimental concrete beams series were modeled on Cast3m software in 2D, and both deterministic and stochastic finite element methods were used to predict energetic size effect on tensile strength. Determenistic FE models of 3-point bending beams are modeled using Mazars damge model. The use of the non local approach is studied, along with the effect of the choice of internal length. Due to energetic size effect, the choice of input tensile strength is investigated. Two choices are considered: splitting tensile strength measured on cylindrical specimens and structural tensile strength calculated using analytical WL2 approach. Moving to stochastic FE method, in order to determine the random field that highly affects concrete mechanical properties, random fields on both tensile strength and Young’s modulus and the correlation between them are studied. Additionally, a sensitivity analysis of the autocorrelation length selection is carried out. In deterministic FE model, analytical WL2 method using non-local approach allows the redistribution of stresses, hence avoiding the failure of the structure. Hence, using ft estimated by analytical WL2 approach is enough to account for size effect. While in stochastic FE model, the variability on ft is the suitable solution for running SFE simulations and enough to account for size effect. What makes stochastic FE method significant is its ability to use tensile strength as random field to model size effect.en_US
dc.description.statementofresponsibilityby Carla Rafeh Hamdanen_US
dc.format.extent1 online resource (xi, 68 pages) : ill., tablesen_US
dc.language.isoengen_US
dc.rightsThis object is protected by copyright, and is made available here for research and educational purposes. Permission to reuse, publish, or reproduce the object beyond the personal and educational use exceptions must be obtained from the copyright holderen_US
dc.subjectAutocorrelation Length, Deterministic Finite Element, Fracture Process Zone, Random Field, Size Effect, Stochastic Finite Element, Tensile Strength, Three-Point Bending, WL2en_US
dc.subject.lcshConcrete beams--Testingen_US
dc.subject.lcshConcrete--Analysisen_US
dc.subject.lcshFinite element methoden_US
dc.subject.lcshUniversity of Balamand--Dissertationsen_US
dc.subject.lcshDissertations, Academicen_US
dc.titleConcrete beams under three-point bending : size effect prediction of tensile strength and fracture process zoneen_US
dc.typeThesisen_US
dc.contributor.corporateUniversity of Balamanden_US
dc.contributor.departmentDepartment of Civil Engineeringen_US
dc.contributor.facultyFaculty of Engineeringen_US
dc.contributor.institutionUniversity of Balamanden_US
dc.date.catalogued2023-07-25-
dc.description.degreeMS in Civil Engineeringen_US
dc.description.statusPublisheden_US
dc.identifier.ezproxyURLhttp://ezsecureaccess.balamand.edu.lb/login?url=http://olib.balamand.edu.lb/projects_and_theses/315902.pdfen_US
dc.identifier.OlibID315902-
dc.provenance.recordsourceOliben_US
Appears in Collections:UOB Theses and Projects
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