| dc.contributor.author | Τσερλεντάκης, Νικήτας
|
el |
| dc.contributor.author | Tserlentakis, Nikitas
|
en |
| dc.date.accessioned | 2026-06-03T11:17:38Z | |
| dc.date.available | 2026-06-03T11:17:38Z | |
| dc.identifier.uri | https://dspace.lib.ntua.gr/xmlui/handle/123456789/64827 | |
| dc.identifier.uri | http://dx.doi.org/10.26240/heal.ntua.32521 | |
| dc.description | Εθνικό Μετσόβιο Πολυτεχνείο--Μεταπτυχιακή Εργασία. Διεπιστημονικό-Διατμηματικό Πρόγραμμα Μεταπτυχιακών Σπουδών (Δ.Π.Μ.Σ.) “Δομοστατικός Σχεδιασμός και Ανάλυση των Κατασκευών” | el |
| dc.rights | Αναφορά Δημιουργού - Παρόμοια Διανομή 3.0 Ελλάδα | * |
| dc.rights.uri | http://creativecommons.org/licenses/by-sa/3.0/gr/ | * |
| dc.subject | Φυσική Προσομοίωση | el |
| dc.subject | Αλληλεπίδραση εδάφους–κατασκευής | el |
| dc.subject | Laminar box | en |
| dc.subject | Equivalent Shear Beam (ESB) | en |
| dc.subject | Shear stack vessel | en |
| dc.title | Σχεδιασμός κιβωτίου για την προσομοίωση υπό κλίμακα εδαφικών στρώσεων σε διάτμηση με χρήση σεισμικού προσομοιωτήρα | el |
| heal.type | masterThesis | |
| heal.secondaryTitle | Design of a Container for the Scaled Simulation of Soil Layers in Shear Using a Seismic Shaking Table | en |
| heal.classification | Soil–Structure Interaction | el |
| heal.classification | Physical Modelling | en |
| heal.classification | Earthquake Engineering | en |
| heal.language | en | |
| heal.access | campus | |
| heal.recordProvider | ntua | el |
| heal.publicationDate | 2026-03-03 | |
| heal.abstract | This thesis concerns the design of a soil container optimized for scaled simulation of soil layers in shear using α seismic shaking table. The container is dimensioned to meet the operational limits of the NTUA shaking table while enabling experiments at a geometric scale between 1/20 and 1/40. A targeted literature review on model container performance in 1g shaking table tests focuses on equivalent shear beam (ESB) and laminar box configurations. Benchmark studies, including large-scale ESB tests at the University of Bristol (Wood et al., 2002; Durante et al., 2016; Psyrras et al., 2020) and representative laminar box investigations of Turan et al. (2009), Mohsan et al. (2018), Castelli et al. (2022) are critically examined with respect to geometry, material composition, dynamic response, and boundary effects. The proposed container consists of alternating aluminum hollow sections and elastomeric layers, designed to match target shear stiffness and enable realistic one-dimensional shear wave propagation. The filling method is also optimized to achieve layer-specific shear wave velocities. The final deliverable is a complete engineering design package, including construction drawings and specifications, for a reusable, high-fidelity testing platform supporting advanced soil–structure interaction research at NTUA. | en |
| heal.advisorName | Μουζάκης, Χαράλαμπος | el |
| heal.committeeMemberName | Μουζάκης, Χαράλαμπος | el |
| heal.committeeMemberName | Σέξτος, Αναστάσιος | el |
| heal.committeeMemberName | Φραγκιαδάκης, Μιχαήλ | el |
| heal.academicPublisher | Εθνικό Μετσόβιο Πολυτεχνείο. Σχολή Πολιτικών Μηχανικών | el |
| heal.academicPublisherID | ntua | |
| heal.numberOfPages | 191 σ. | el |
| heal.fullTextAvailability | false |
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