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Več - Fakulteta za arhitekturo - Univerza v Ljubljani

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3.2. OSNOVE GRADBENE MEHANIKE BASICS OF BUILDING MECHANICS<br />

III. letnik 60 ur<br />

doc. dr. Vojko Kilar, univ. dipl. inž. grad.<br />

- SAP2000 “Integrated Finite Element Analysis and Design of Structures”, Computers and Structures, Inc., Berkeley, California, USA 2002<br />

- Kilar, V.: Osnove gradbene mehanike - primeri rešenih nalog z izvleèki teorije, <strong>Fakulteta</strong> <strong>za</strong> <strong>arhitekturo</strong> 1997<br />

- Kilar, V.: Potresna obtežba, potresni spektri in poenostavljen raèun pri potresni obrtežbi, uèbenik, <strong>Fakulteta</strong> <strong>za</strong> <strong>arhitekturo</strong> 2003<br />

- Fischinger, M. in Cerovšek, S.: Ba<strong>za</strong> diapozitiovov o poškodbah konstrukcij, sistem EASY, <strong>Fakulteta</strong> <strong>za</strong> gradbeništvo in geodezijo,<br />

Inštitut <strong>za</strong> konstrukcije, potresno inženirstvo in raèunalništvo, Ljubljana 1997<br />

- Salvadori, M. in Heller, R.: Konstrukcije v arhitekturi, DZS, Ljubljana 1979<br />

- Fajfar, P.: Zasnova potresno varnih zgradb, FGG, Ljubljana 1995<br />

- Dobovišek, B.: Ali (bi zdržalo ?), raèunalniški program <strong>za</strong> preizkus konstrukcij, <strong>Fakulteta</strong> <strong>za</strong> <strong>arhitekturo</strong>, VII ponatis 1996<br />

- Benedik, B.S.: Statika konstrukcij, <strong>Fakulteta</strong> <strong>za</strong> gradbeništvo, Maribor 1998.<br />

- Prelog, E., Statika gradbenih konstrucij II, FAGG, Ljubljana<br />

Vsebina: Predmet uvodoma obravnava nekatere osnovne pojme statike konstrukcij kot so: podajnost, togost, trdnost, raèunski modeli in<br />

predpostavke, statièno doloèene in nedoloèene konstrukcije, varnost, stabilnost in porušitveni mehanizmi. Prvi del na kratko obravnava metodo sil in<br />

metodo pomikov <strong>za</strong> enostavnejše linijske konstrukcije, konène elemente in vpliv togosti na delitev obremenitve. Razložene so tudi osnove statiène in<br />

dinamiène obtežbe, osnove pomiène obtežbe, ovojnice in vplivnice. Drugi del obravnava statièno-konstrukcijske lastnosti gradbenih materialov kot so<br />

armirani beton, jeklo, les, aluminij, steklo, plastika in podaja kriterije <strong>za</strong> izbiro gradiva (odnosi: teža, nosilnost cena). V nadaljevanju predmet<br />

podrobneje obravnava potresno obtežbo in pomembnost konstrukcijske <strong>za</strong>snove stavbe na njeno obnašanje med potresi. Razložene so potresne<br />

obremenitve, nedoloèenost pojava, spekter potresa in približna raèunska simulacija. Nadalje je obravnavan prenos vodoravne in vertikalne<br />

obremenitve, doloèitev nosilnih elementov, problem vertikalnega ravnotežja, pogoj togih etažnih plošè in približno raèunanje prenosa vodoravnih in<br />

vertikalnih obremenitev <strong>za</strong> enoetažne in veèetažne sisteme. Podane so tudi osnove raèuna toèkovnih temeljev. V <strong>za</strong>dnjem delu se predmet<br />

podrobneje posveèa izbiri dimenzij horizontalnih elementov (nosilci, brane, plošèe, palièja) in vertikalnih elementov (stebri, stene). Proces izbire<br />

dimenzij <strong>za</strong> konstrukcije iz jekla, betona ali lesa je prika<strong>za</strong>n v veè stopnjah: a) osnovna ocena potrebnih dimenzij, b) poenostavljen raèun in c)<br />

toèen raèun. Kjer je to mogoèe, je posamezna tematika obogatena tudi s pomoèjo diapozitivov s primeri dejanskih konstrukcij in raèunalniških<br />

simulacij, ki študentom omogoèajo neposrednejši stik s predmetom.<br />

Contents: The subject deals with some of the basic concepts of construction statics, such as: flexibility, rigidity, computation models and hypotheses,<br />

statically defined and undefined constructions, safety, stability and collapse mechanisms. The first part gives a short overview of methods of forces<br />

and methods of motions in simple linear constructions, final elements and the effects of rigidity on the distribution of loads. Basics of static and<br />

dynamic loads, moving loads, envelopes and influencing factors are also explained. The second part deals with static-construction properties of<br />

building materials, such as: reinforced concrete, steel, timber, aluminium, glass, plastics and presents criteria for selection of material (relation: weight,<br />

carrying capacity, price). In continuation the course gives a detailed account of earthquake stresses and deals with the significance of behaviour of<br />

a building’s construction during earthquakes. Earthquake loads, non-determinability of the phenomenon, the earthquake spectre and approximation<br />

computer simulations are also explained. Furthermore, transport of vertical and horizontal loads are explained, definition of carrying elements,<br />

problems of vertical balance, conditions of rigid floor plates and approximate computation of translation of vertical and horizontal loads for singlefloor<br />

or multi-floor systems. Basics for calculating simple point foundations are also given. The last part of the course gives a detailed account of<br />

choosing dimensions for horizontal elements (beams, grids, plates, frames and vertical elements (columns, walls). The process of choosing<br />

dimensions for steel, concrete or timber constructions is presented in several steps: a) basic assessment of needed dimensions; b) simplified<br />

calculation; c) exact calculation. Wherever possible the particular themes are enriched with slides showing examples of real constructions and<br />

computer simulations, which enable the student direct contacts to the subject.<br />

leto year<br />

01<br />

02<br />

03<br />

04<br />

05<br />

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