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Projektiranje desetetažne stenaste armiranobetonske stavbe s programom Sap2000 in ETABS
ID Škerjanc, Kristjan (Author), ID Gams, Matija (Mentor) More about this mentor... This link opens in a new window, ID Bratina, Sebastjan (Comentor)

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Abstract
V nalogi je predstavljen celovit postopek projektiranja desetetažne stenaste armiranobetonske stavbe na območju Ljubljane z uporabo programske opreme SAP2000 in ETABS v skladu z zahtevami Evrokod standardov in nacionalnih dodatkov. Stavba obsega kletno etažo, pritličje, sedem tipičnih nadstropij in terasno etažo. Prikazana je določitev vseh pomembnih vplivov, lastne teže, stalnih in koristnih obtežb, obtežbe snega, vetra ter potresnega vpliva. Analiza nosilne konstrukcije stavbe je izvedena z dvema ločenima računskima modeloma: prvim za kontrolo stalnih projektnih stanj in drugim za potresno projektno stanje. V okviru dimenzioniranja sta podrobno obravnavani tipična stropna konstrukcija in primarna potresna stena, ki poteka od temeljev do vrha stavbe. Rezultati vključujejo preverbe mejnih stanj nosilnosti in uporabnosti ter kontrolo dimenzij nosilnega elementa in potrebne armature. V magistrskem delu je prikazan primer uporabe sodobnih orodij za zanesljivo in potresno odporno projektiranje armiranobetonskih stavb.

Language:Slovenian
Keywords:armiranobetonska konstrukcija, stenasti sistem, SAP2000, ETABS, Evrokod, potresna odpornost, dimenzioniranje, modeliranje, Ljubljana, večstanovanjska stavba
Work type:Master's thesis/paper
Organization:FGG - Faculty of Civil and Geodetic Engineering
Year:2025
PID:20.500.12556/RUL-177419 This link opens in a new window
Publication date in RUL:23.12.2025
Views:372
Downloads:226
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Secondary language

Language:English
Title:Structural Design of a Ten-Storey Reinforced Concrete Shear Wall Building Using SAP2000 and ETABS
Abstract:
The thesis presents a comprehensive design procedure for a ten-story reinforced concrete wall building in the Ljubljana area using SAP2000 and ETABS software in accordance with the requirements of Eurocode standards and national supplements. The building includes a basement floor, ground floor, seven typical floors and a terrace floor. The determination of all significant influences, self-weight, permanent and live loads, snow loads, wind loads and seismic effects is shown. The analysis is performed with two separate numerical models: the first for checking permanent design states and the second for seismic design states. As part of the dimensioning, a typical slab structure and a primary seismic wall running from the foundation to the top of the building are discussed in detail. The results include verification of load-bearing and serviceability limit states together with checking the dimensions of the load-bearing element and the necessary reinforcement. The master's thesis shows an example of the use of modern tools for reliable and earthquake-resistant design of reinforced concrete buildings.

Keywords:reinforced concrete, shear wall system, SAP2000, ETABS, Eurocode, seismic resistance, structural design, modelling, Ljubljana, residential building

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