Novel Multi-Fidelity Multi-Physics Validation Methodology For Transient Applications.

dc.contributor.advisorMaria Avramova, Co-Chair
dc.contributor.advisorKostadin Ivanov, Co-Chair
dc.contributor.advisorBenjamin Beeler, Member
dc.contributor.advisorGrigorios Delipei, Member
dc.contributor.advisorRalph Smith, Member
dc.contributor.advisorMark DeHart, External
dc.contributor.authorFaure, Quentin David
dc.date.accepted2024-06-12
dc.date.accessioned2024-06-14T12:30:38Z
dc.date.available2024-06-14T12:30:38Z
dc.date.defense2024-05-15
dc.date.issued2024-05-15
dc.date.released2024-06-14
dc.date.reviewed2024-05-23
dc.date.submitted2024-05-21
dc.degree.disciplineNuclear Engineering
dc.degree.leveldissertation
dc.degree.nameDoctor of Philosophy
dc.descriptionNorth Carolina State University Theses Nuclear Engineering.
dc.formatPh.D. North Carolina State University, 2024.
dc.identifier.otherdeg38218
dc.identifier.urihttps://www.lib.ncsu.edu/resolver/1840.20/41905
dc.titleNovel Multi-Fidelity Multi-Physics Validation Methodology For Transient Applications.
dcterms.extent1 online resource (xii, 163 pages) : illustrations (some color)

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