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Analiza nosilne konstrukcije poslovno-stanovanjske večetažne stavbe
ID Maleš, Dijana (Author), ID Bratina, Sebastjan (Mentor) More about this mentor... This link opens in a new window

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Abstract
V sklopu magistrske naloge obravnavamo poslovno-stanovanjsko večetažno stavbo, ki se nahaja v Krškem. Horizontalne nosilne elemente predstavljajo armiranobetonske monolitne medetažne plošče, ki služijo za raznos ploskovne obtežbe. Plošče so podprte z armiranobetonskimi stenami ter prostorskimi okvirji, ki predstavljajo sistem za prenos vertikalne obtežbe, obtežbe vetra ter vodoravnega potresnega vpliva. Na podlagi arhitekturnih načrtov in ob upoštevanju določenih poenostavitev izdelamo idealizirana modela nosilne konstrukcije, ki morata čim bolj realno opisati obravnavano konstrukcijo. Za analizo horizontalnih nosilnih elementov uporabimo uveljavljeno programsko opremo SAP2000, s pomočjo katere izdelamo idealiziran računski model tipične medetažne plošče. Za analizo vertikalnih nosilnih elementov izdelamo idealiziran računski prostorski model nosilne konstrukcije obravnavane stavbe v celoti. Slovenija leži na potresnem območju, zato je za projektiranje stavb v večini primerov merodajno potresno projektno stanje. V ta namen uporabimo programsko opremo ETABS, ki je v osnovi namenjena analizi konstrukcije pri delovanju vodoravnih potresnih vplivov. Razporeditev nosilnih elementov v pritlični etaži obravnavane stavbe se precej razlikuje od nosilnih elementov v višjih etažah. Pri prvotni zasnovi nosilne konstrukcije se tako izkaže, da so projektne obremenitve prevelike, predvsem v stopniščnem jedru. Z dodajanjem armiranobetonskih sten je izvedena ojačitev nosilne konstrukcije ter zagotovljena ustrezna nosilnost jedra v potresnem projektnem stanju. Za analizirano medetažno ploščo in stopniščno jedro izdelamo armaturne načrte v programu ArmCAD. Ta je integriran v program AutoCAD in nam omogoča določevanje optimalne armature.

Language:Slovenian
Keywords:armiranobetonska stavba, idealizirani modeli, plošča, stena, nosilec, okvir
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FGG - Faculty of Civil and Geodetic Engineering
Publisher:[D. Maleš]
Year:2017
PID:20.500.12556/RUL-93046 This link opens in a new window
UDC:624.012.045:624.04(043.3)
COBISS.SI-ID:8115041 This link opens in a new window
Publication date in RUL:18.07.2017
Views:2706
Downloads:915
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Secondary language

Language:English
Title:Analysis of load-bearing structure of a multi-storey office-residential building
Abstract:
The master thesis discusses the multi-story office-residential building, located in Krško. The reinforced concrete monolithic floor slabs represent the horizontal load-bearing elements and serve for arrangement of the area loads. The slabs are restrained by reinforced concrete walls and reinforced concrete frames. The elements represent the system for transmission of the vertical loads, loads of wind and horizontal seismic impact. From the architectual plans, based on certain simplification, were made idealized models of the load-bearing structure which as realistically as possible must describe the discussed construction. For the analysis of the horizontal load-bearing elements the program softwere SAP2000 is used. In the program an idealized mathematical model of the typical floor slab was created. For the analysis of the vertical load-bearing elements we made an idealized mathematicah model of the load-bearing structure of the global building. Slovenia is located within a seismic area and in most cases for the design of buildings a proper seismic limite state is relevant. For this purpose we used the program softwere ETABS, which is intended for the analysis construction on impect of the horizontal seismic impact. The arrangement of the load-bearing elements in the ground floor vary considerably from the load-bearing elements in story floors. It turns out the original design of the load-bearing structure loads is too big, particularly in the staircase core. By adding reinforced walls the load-bearing structure is strengthened and provided with adequate capacity of the staircase core in seismic design state. The reinforced plans in the program ArmCAD were displayed for reinforced concrete slab and staircase core. The program is an integral part of the AutoCAD and allows the determination of optimal reinforcements.

Keywords:concrete building, idealized models, plate, wall, beam, framework

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