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Nelinearna statična analiza večetažne stavbe iz križno lepljenega lesa : magistrsko delo št.: 248/II. GR
ID Naumovski, Luka (Author), ID Gams, Matija (Mentor) More about this mentor... This link opens in a new window, ID Azinović, Boris (Co-mentor)

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Abstract
V magistrskem delu je zasnovana in na potresno obtežbo računsko preverjena 12 nadstropna stavba iz križno lepljenega lesa. Gre za preliminarno analizo potencialnih nadomestnih gradenj v Ljubljani, kjer bi se obstoječe tipske več nadstropne stanovanjske stavbe z nezadostno potresno odpornostjo nadomestilo s sodobno zasnovanimi vendar arhitekturno sorodnimi stavbami iz trajnostnih materialov. V nalogi je na osnovi preučene arhivske dokumentacije ene izmed obstoječih tipskih stavb ter z upoštevanjem materialnih in tehnoloških omejitev zasnovana nova stavba iz križno lepljenega lesa. Na osnovi podatkov iz literature in že izvedenih eksperimentov o potresnem odzivu posameznih stenskih elementov in veznih sredstev je bil modeliran njihov odziv. Razvit je bil nelinearen računski model veznih sredstev, ki je bil v nadaljevanju tudi validiran. Na podlagi validiranega odziva posamezne stene se je pristopilo k izdelavi računskega nelinearnega modela načrtovane stavbe. Na osnovi notranjih statičnih veličin linearnega modela so bile ocenjene dimenzije nosilnih elementov (križno lepljenega lesa in spojev), nadalje je bila izvedena nelinearna potisna analiza. Le-ta je predstavljala osnovo za analizo po N2 metodi in metodi načrtovanja pomikov - za oceno ustreznosti odziva in odpornosti zasnovane stavbe na potresno obtežbo.

Language:Slovenian
Keywords:gradbeništvo, magistrska dela, GR, križno lepljen les, lesena gradnja, CLT, večetažne lesene konstrukcije, lesena masivna gradnja, nadomestna gradnja, potresno inženirstvo, poenostavljena nelinearna analiza, N2 metoda
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:[L. Naumovski]
Year:2022
Number of pages:XXII, 114 str., [43] str. pril.
PID:20.500.12556/RUL-142314-405e6efd-bfa8-84c8-cc05-1ae2a14a1da3 This link opens in a new window
UDC:624.011.1:624.042.7(497.451.1)(043.3)
COBISS.SI-ID:132455171 This link opens in a new window
Publication date in RUL:29.10.2022
Views:1095
Downloads:188
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Secondary language

Language:English
Title:Nonlinear static analysis of a multi-storey cross laminated timber building : master thesis no.: 248/II. GR
Abstract:
In the thesis, a 12-storey building made of cross-laminated timber is designed and numerically tested for seismic loading. It is a preliminary analysis of potential replacement buildings in Ljubljana, where existing typical multi-storey residential buildings with insufficient seismic resistance would be replaced with modern but architecturally similar buildings made of sustainable materials. With the help of the studied archival documentation of one of the existing buildings and further - considering the material and technological constraints - a new cross-laminated timber building was designed. The response of the individual walls and the connections has been simulated on the basis of literature data and experiments already carried out on the seismic response of individual walls and connection elements. A non-linear computational model of the connection elements was developed and further validated. The validated single wall model was implemented into the development of a numerical non-linear model of the designed building. Based on the internal static quantities determined from the linear model, the dimensions of the load-bearing elements (cross-laminated timber and connections) were estimated and finally a non-linear pushover analysis was performed. This formed the basis for the implementation of the N2 method and the DBD - to further assess the adequacy of the response and resistance of the designed building to various seismic loading.

Keywords:civil engineering, master thesis, cross laminated timber, mass timber construction, CLT, multi-storey timber buildings, timber engineering, earthquake engineering, displacement-based seismic design, pushover analysis, N2 method

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