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Računalniški program za optimalno dimenzioniranje armiranobetonskih prerezov : diplomska naloga
ID Krofl, Žiga (Author), ID Lopatič, Jože (Mentor) More about this mentor... This link opens in a new window

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PID: 20.500.12556/rul/83310dc6-c1b0-4559-9cbf-539b93b21833

Abstract
V diplomski nalogi je predstavljen računalniški program za optimalno dimenzioniranje armiranobetonskih prerezov poljubne oblike, obremenjenih z dvojno ekscentrično osno silo. Računanje poteka v programu Excel, za postopek optimizacije je uporabljen podprogram Solver. Obod prereza predstavim kot mnogokotnik, armaturo podam kot točke v prerezu. Pri računu predpostavim linearen potek deformacij po prerezu in delovne diagrame betona običajne trdnosti ter armature skladno z EC2. Pri integraciji napetosti po prerezu uporabim Greenov izrek in prevedem površinski integral na krivuljni integral po obodu prereza. Notranje količine izračunam za vsak odsek mnogokotnika posebej. Vse enačbe na nivoju odseka so analitične. Pravilnost programa potrdim z računom enostavnih prerezov. Dobljene rezultate primerjam z obstoječimi rešitvami. Na koncu optimiziram nesimetričen prerez obremenjen z dvojno ekscentrično osno silo.

Language:Slovenian
Keywords:gradbeništvo, diplomska naloga, UNI, AB prečni prerez, mejna nosilnost, dvojno ekscentrična osna obremenitev, poljubna oblika, optimizacija
Work type:Undergraduate thesis
Typology:2.11 - Undergraduate Thesis
Organization:FGG - Faculty of Civil and Geodetic Engineering
Place of publishing:Ljubljana
Publisher:[Ž. Krofl]
Year:2016
Number of pages:X, 58 str.
PID:20.500.12556/RUL-86395 This link opens in a new window
UDC:624.012.45:624.046:004.42 (043.2)
COBISS.SI-ID:7782497 This link opens in a new window
Publication date in RUL:23.11.2016
Views:2900
Downloads:659
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Secondary language

Language:English
Title:A computer program for optimization of reinforced concrete cross section
Abstract:
A computer program for optimization of reinforced concrete cross section of an arbitrary shape loaded with combined biaxial bending and axial load is presented in the graduation thesis. The computation takes place in the Excel computer program, optimization is performed with the Solver Add–in. The perimeter of the cross section area is presented as a polygon, the steel reinforcment bars are input as points in the area. The stress-strain relationship of the conventional strength concrete and steel rebar are compliant with the EC2 code. Bernoulli’s assumption that plane sections remain plane is valid. By employing Green’s Theorem, the double integral of the longitudinal stresses is transformed to line integral along the cross sections perimeter. For each section of the polygon, the forces are computed. All equations on the section level are analytical in nature. The verification of the program is performed by comparing the results obtained on standard cross sections with results available in the literature. The application of the computer program is illustrated with asymetrical RC cross-section design example.

Keywords:graduation thesis, civil engineering, RC cross section, ultimate bearing capacity, combined biaxial bending and axial load, arbitrary shape, optimization

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