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Spletna aplikacija za oceno potresne ranljivosti zidanih stavb : magistrsko delo
ID Fabijan, Nejc (Author), ID Dolšek, Matjaž (Mentor) More about this mentor... This link opens in a new window, ID Dolenc, Matevž (Comentor), ID Šebenik, Žiga (Comentor)

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PID: 20.500.12556/rul/1ad2bc49-910d-4d6c-b017-abc8d3abcddd

Abstract
Predstavljena je spletna aplikacija za analizo potresne ranljivosti zidanih stavb, ki je bila razvita v programskem jeziku PHP. V prvem delu naloge so na kratko opisane zidane stavbe ter njihovo obnašanje med potresi. V nadaljevanju so podane teoretične osnove poenostavljene nelinearne analize za določitev potresne odpornosti zidanih stavb. Metoda temelji na poenostavljeni potisni analizi, pri kateri se upošteva etažni strižni mehanizem, in inkrementalni dinamični analizi, ki se izvede na ekvivalentnem sistemu z eno prostostno stopnjo. Rezultati analize so poenostavljene krivulje IDA, s katerimi se opiše odnos med intenziteto potresa in potresnimi zahtevami. Na osnovi teh rezultatov se za različna mejna stanja poškodovanosti določi vzorec mejnih pospeškov, ki predstavlja vhodni podatek za račun krivulj potresne ranljivosti objekta. V nalogi so predstavljeni tudi akcelerogrami, ki smo jih uporabili za inkrementalno dinamično analizo, kot tudi postopek izračuna krivulje potresne ranljivosti stavbe. V petem poglavju so opisani postopki in principi ter programski jeziki, s katerimi smo izdelali spletno aplikacijo. Sledi predstavitev in demonstracija uporabe spletne aplikacije v kateri smo združili različne metode v eno aplikacijo. Za izbrano zidano stavbo smo pokazali, da so mejni pospeški, ki smo jih določili z uporabo spletne aplikacije, podobni rezultatom iz modela ekvivalentnega okvira. Nekoliko večje razlike smo opazili pri razporeditvi poškodovanosti za izbrana mejna stanja. V zaključku so predlagane še možnosti razširitve in uporabe aplikacije.

Language:Slovenian
Keywords:gradbeništvo, magistrska dela, analiza potresne ranljivosti, potresna odpornost, zidane stavbe, spletna aplikacija, Evrokod 8, Evrokod 6, PHP, MySQL, potisna analiza, IDA, HTCondor
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FGG - Faculty of Civil and Geodetic Engineering
Place of publishing:Ljubljana
Publisher:[N. Fabijan]
Year:2016
Number of pages:X, 68 str.
PID:20.500.12556/RUL-84482 This link opens in a new window
UDC:004.7:624.042.7(497.4)(043)
COBISS.SI-ID:7582817 This link opens in a new window
Publication date in RUL:19.09.2016
Views:4566
Downloads:762
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Secondary language

Language:English
Title:Web application for seismic vulnerability assessment of masonry buildings
Abstract:
In this thesis a web application for seismic vulnerability analysis of masonry buildings, which was developed in PHP programming language, is presented. Firstly, masonry buildings and their behaviour during the seismic event are briefly described. Follows a description of the theoretical background of the simplified nondlinear analysis for seismic performance assessment of masonry buildings. The method is based on simplified pushover analysis with consideration of storydshear plastic mechanisms and the incremental dynamic analysis, which is performed by equivalent single degree of freedom model. Results of the analysis are simplified IDA curves. They can be used to estimate a sample of maximum acceleration causing different limit states, which represents the input data for the calculation of the structure’s seismic fragility curves. Different set of accelergorams, which were selected to be used in the web application, and the procedure for calculation of seismic fragility curves are also presented. In the fifth chapter, the procedure, principles and programming languages used to create the application are described. Follows description and demonstration of the use of web application. For the investigated masonry building it is shown that the limitdstate accelerations obtained by the web application are similar to the results based on the equivalent frame model. Some larger difference can be observed in the distribution of damage in structural elements for a designated limit state. In the conclusion, possibilities for future development and use of the application is discussed.

Keywords:civil engineering, seismic fragility analysis, earthquake resistance, masonry buildings, web application, Eurocode 8, Eurocode 6, PHP, MySQL, pushover analysis, IDA analysis

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