109 results on '"Kostić Svetlana M."'
Search Results
2. Comprehensive review of the structural behaviour and numerical modelling of recycled aggregate concrete-filled steel tubes
- Author
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Nikolić, Jelena, Tošić, Nikola, Murcia-Delso, Juan, and Kostić, Svetlana M.
- Published
- 2024
- Full Text
- View/download PDF
3. Practical ANN prediction models for the axial capacity of square CFST columns
- Author
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Đorđević, Filip and Kostić, Svetlana M.
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- 2023
- Full Text
- View/download PDF
4. Numerical modelling of concrete-filled steel tubular short columns under axial compression
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Nikolić Jelena, Kostić Svetlana M., and Stošić Saša
- Subjects
composite columns ,nonlinear analysis ,3d fem model ,concrete material model ,eurocode 4 ,Engineering (General). Civil engineering (General) ,TA1-2040 - Abstract
The paper presents three-dimensional numerical models of short concrete-filled steel tubular circular columns that can successfully describe the column behaviour under axial compression. Several of the most commonly used material models for the steel part and a concrete portion of the column are evaluated in the models. In addition, the paper presents a new proposal for the extension of the Eurocode 2 stress-strain relation to make it suitable for describing the complex behaviour of concrete inside the steel tube. This model overcomes the current limitations of the Eurocode 2 design guide, referring to the limitation for the concrete curve in compression to 3.5%o strain. The ultimate axial column strength obtained by the proposed model is compared to the ultimate column capacity calculated by a simplified method provided in Eurocode 4. All presented numerical models are validated on a set of experiments from the literature and demonstrate good agreement. The comments about the accuracy of each model are provided, along with the identified limitations.
- Published
- 2023
5. Generalized plasticity model for inelastic RCFT column response
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Kostic, Svetlana M., Filippou, Filip C., and Deretic-Stojanovic, Biljana
- Published
- 2016
- Full Text
- View/download PDF
6. Fiber finite element in nonlinear analysis of square CFT columns
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Blagojević Nikola, Kostić Svetlana M., and Stosić Saša
- Subjects
fiber beam/column element ,CFT column ,nonlinear analysis ,Engineering (General). Civil engineering (General) ,TA1-2040 - Abstract
The paper presents nonlinear analysis of square CFT columns using distributed plasticity fiber elements. Behaviour of CFT columns is nonlinear and it is necessary to include different nonlinear effects into the numerical model in order to simulate their behaviour properly. Model proposed in this work considers: nonlinear behaviour of concrete and steel using nonlinear stress-strain models, confinement effect and geometrical nonlinearities. Tests exposed to static loading with different slenderness, different D/t ratio (where D is the total dimension of a cross section and t is the thickness of steel tube) and different loading conditions are analyzed. Stress-strain models that best approximate the behaviour of CFT columns are determined from a detailed parametric study. The proposed numerical model is validated by comparing numerical with experimental results available in the literature.
- Published
- 2017
- Full Text
- View/download PDF
7. An Efficient Beam-Column Element for Inelastic 3D Frame Analysis
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Kostic, Svetlana M., Filippou, Filip C., Lee, Chin-Long, Papadrakakis, Manolis, editor, Fragiadakis, Michalis, editor, and Plevris, Vagelis, editor
- Published
- 2013
- Full Text
- View/download PDF
8. Fiber element formulation for inelastic frame analysis
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Kostić Svetlana M. and Deretić-Stojanović Biljana
- Subjects
fiber based beam/column element ,distributed plasticity ,force formulation ,displacement formulation ,Engineering (General). Civil engineering (General) ,TA1-2040 - Abstract
The paper discusses two formulations for the fiber based distributed plasticity beam/column element. For force based and displacement based formulations, basic details and main differences are emphasized. The differences in results of analysis when elements with these two formulations are used are demonstrated on two numerical examples. The first example involves the nonlinear static pushover analysis of low-rise frame with distributed element loading. The second example is nonlinear time history analysis of two-story frame subjected to earthquake loading. The differences in global and local response depending on the used finite element discretization are shown. In conclusion, the advantages of force based formulation and directions for the use of the two elements are summarized.
- Published
- 2016
- Full Text
- View/download PDF
9. Matrix Stiffness Method for Composite and Prestressed Beam Analysis Using Linear Integral Operators
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Deretić-Stojanović, Biljana and Kostić, Svetlana M.
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- 2015
- Full Text
- View/download PDF
10. Time-dependent analysis of composite and prestressed beams using the slope deflection method
- Author
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Deretić-Stojanović, Biljana and Kostić, Svetlana M.
- Published
- 2015
- Full Text
- View/download PDF
11. Redistribution effects in linear elastic analyses of continuous composite steel-concrete beams according to Eurocode 4
- Author
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Kostić Svetlana M., Deretić-Stojanović Biljana, and Stošić Saša
- Subjects
composite structures ,creep ,shrinkage ,cracking of concrete ,shear-lag ,Architecture ,NA1-9428 ,Engineering (General). Civil engineering (General) ,TA1-2040 - Abstract
Different analytical methods, with different levels of approximations and accuracy, are available for analysis of continuous composite steel-concrete beams. The Eurocode 4 recommends few simple methods for calculation of creep, shrinkage, cracking of concrete and shear lag effects that are explained in the paper. Through the numerical examples of four continuous composite steel-concrete beams, the proposed methods of analyses are evaluated and compared. Practical recommendations for analysis of this type of girders are formulated.
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- 2011
- Full Text
- View/download PDF
12. Structural Behaviour of Axially Loaded Concrete-Filled Steel Tube Columns during the Top-Down Construction Method
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Lazović Radovanović, Marija, Nikolić, Jelena, Radovanović, Janko, Kostić, Svetlana M., Lazović Radovanović, Marija, Nikolić, Jelena, Radovanović, Janko, and Kostić, Svetlana M.
- Abstract
The paper discusses the structural behaviour of concrete-filled steel tube columns (CFT) when applied to the top-down construction method as temporary internal supports for ceilings. Their ultimate capacity to take into account the actual boundary conditions of the column is essential for successful application in construction. The paper presents the full-scale in situ testing of four slender specimens with variable D/t ratios under concentric axial loading. The CFT columns were supported on the previously jacked concrete piles. In addition, detailed finite element numerical models in ABAQUS and PLAXIS computer programs were developed. The models include the nonlinear behaviour of materials and the nonlinear behaviour of soil. The soil–pile–column interaction and impact of the CFT column–pile connection stiffness on global column stability were considered. The numerical model was validated by comparison with the experimental results. In conclusion, the coefficient for the effective buckling length of the studied columns is proposed. Finally, the experimental results of the critical buckling forces were compared with widely used international design codes Eurocode 4-EC4, American standard-ACI and the Australian standard-AS.
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- 2022
13. Axial Strength Prediction of Square CFST Columns Based on The ANN Model
- Author
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Đorđević, Filip, Kostić, Svetlana M., Đorđević, Filip, and Kostić, Svetlana M.
- Abstract
Due to numerous advantages, concrete-filled steel tubular (CFST) columns have an increasingly important role in the civil engineering industry. Because of the expensive experimental testing of these members, it is beneficial to provide prognostic models. In this study, an artificial neural network (ANN) model for predicting the axial compressive strength of square CFST columns has been developed. A dataset of 1022 samples (685 stub columns and 337 slender columns) was collected from available literature in order to compare the accuracy of the fast predictive Levenberg-Marquardt algorithm (LM) and Eurocode 4 (EC4) design code. Analyses showed that the ANN model has better accuracy than EC4. Over a whole domain, the ANN model has higher coefficient of determination (R2), and lower root mean squared error (RMSE). The same conclusion is valid when two separate datasets are considered: one for stub columns and the other for slender columns. The benefit of the ANN model is its applicability in a broader range of column parameters. At the same time, EC4 puts several limitations on its use and gives satisfactory results only in limited circumstances. Empirical equations have also been proposed from the best ANN model, which is useful for engineering practice.
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- 2022
14. Prediction of Ultimate Compressive Strength of CCFT Columns Using Machine Learning Algorithms
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Đorđević, Filip, Kostić, Svetlana M., Đorđević, Filip, and Kostić, Svetlana M.
- Abstract
The composite concrete-filled steel tube columns are structural members with numerous advantages over the traditional reinforced concrete or the pure steel members. The behavior of these columns is highly nonlinear. This paper analyses the determination of the ultimate compressive capacity of circular concrete-filled tubes according to the Eurocode 4 design code and its accuracy in comparison with the experimentally available results from the literature. In order to improve the predictions of the column’s ultimate compressive capacity, two efficient machine learning algorithms are employed separately for the stub and the slender columns. The analyzed algorithms are the Decision tree and the Random forest. The research used an experimental dataset of 508 samples: 236 tests on the stub columns and 272 tests on the slender columns. It adapted the dataset to the provision of the Eurocode 4 design code. The predictions of the column’s ultimate axial capacity obtained by two ML algorithms and the Eurocode 4 are compared with the experimental test results on the validation dataset. The calculated R2 error measure has shown that the predictions obtained by the tree-based algorithms are superior compared to the design formulas offered by the Eurocode 4. The decision tree algorithm achieved the best accuracy measured with the highest value of R2 error measure between the two algorithms. The two analyzed algorithms are used to perform the sensitivity analysis on the considered problem. The sensitivity analysis used the feature importance, a technique that assigns a score to each of the input features based on their influence on the prediction of the output variable. As expected, the sensitivity analysis identified the outer diameter of the columns’ cross-section as the parameter with the most significant impact on the results.
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- 2022
15. Numerical modelling of concrete-filled steel tube columns under axial compression
- Author
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Nikolić, Jelena, Kostić, Svetlana M., Stošić, Saša, Nikolić, Jelena, Kostić, Svetlana M., and Stošić, Saša
- Abstract
The paper presents the numerical modelling of concrete-filled steel tube stub columns under axial compression. The nonlinear 3D finite element model for the analysis was developed using ABAQUS software. The modelling, boundary conditions, the constitutive models for steel and concrete and contact interaction between the steel tube and concrete surface are discussed in detail. Three numerical models are proposed and validated using collected experimental data results. Finally, the composite column axial capacity is compared with the Eurocode 4 calculations for composite columns.
- Published
- 2022
16. An Adaptive Fiber Section Discretization Scheme for Nonlinear Frame Analysis
- Author
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Kostić, Svetlana M. and Kostić, Svetlana M.
- Abstract
The paper proposes an adaptive fiber section discretization scheme for inelastic frame elements. The scheme uses cubature rules for the efficient and accurate evaluation of the section response over the elastic portion of the section. As inelastic strains arise and penetrate into the section from the edges, the scheme converts the area under inelastic strains to a regular fiber discretization. This approach offers considerable advantages for the computational efficiency of large structural models with inelastic frame elements by minimizing the number of integration points in sections with limited inelastic response. The proposed scheme is presented for circular and rectangular cross sections, but the approach is applicable to other section shapes. Inelastic frame response examples demonstrate the benefits of the proposed discretization scheme for the nonlinear response history analysis of large structural models.
- Published
- 2022
17. Estimation of ultimate strength of slender ccfst columns using artificial neural networks
- Author
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Đorđević, Filip, Kostić, Svetlana M., Đorđević, Filip, and Kostić, Svetlana M.
- Abstract
This paper proposes the use of artificial neural network (ANN) algorithms to estimate the ultimate compressive strength of slender circular concrete-filled steel tubular (CCFST) columns. A dataset of 1051 samples was applied to generate an appropriate ANN prognostic model. Empirical equations were also developed from the best neural network, and their results were compared with those obtained by Eurocode 4 (EC4) design code. Analyses show that the proposed ANN model has a better agreement with experimental results than those created with provisions of the EC4 design code.
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- 2022
18. Composite Steel-Concrete Beam Analysis using Different Methods
- Author
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Nikolić, Jelena, Kostić, Svetlana M., and Deretić-Stojanović, Biljana
- Subjects
concrete creep function ,viscoelastic analysis ,composite structures - Abstract
The paper compares the following methods for analysis of composite steel-concrete beams: the “exact” analysis method, simplified method, effective modulus method and the method proposed by Eurocode 4 design code. The exact analysis method is based on the application of linear integral operators. Simplified analysis is derived from the exact method and adopts the assumption that generalized displacements change linearly with the concrete creep function. Effective modulus method and the method proposed by the Eurocode 4 design code are algebraic methods, widely used in practice. The results obtained using the mentioned four methods are compared on one example.
- Published
- 2021
19. Continuous Composite Steel Concrete Beams with Partial Shear Connection
- Author
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Bendić, Milica, Kostić, Svetlana M., and Nikolić, Jelena
- Subjects
Condensed Matter::Soft Condensed Matter ,Partial shear connection ,ductile shear connectors ,continuous composite steel-concrete beams ,bending resistance - Abstract
The paper presents the calculation of continuous composite steel-concrete beams with a partial shear connection and ductile shear connectors. The algorithm for determining the ultimate load as a function of shear resistance capacity is explained. The calculation is applied to a numerical example. The obtained results are discussed. Guidelines for further research in this area are given.
- Published
- 2021
20. EXACT AND APPROXIMATE METHODS OF ANALYSIS OF STEEL-CONCRETE COMPOSITE BEAMS
- Author
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Kostić, Svetlana M. and Deretić-Stojanović, Biljana
- Subjects
concrete creep function ,steel-concrete composite structures ,linear integral operators ,viscoelastic analysis - Abstract
The paper presents four different methods for viscoelastic analysis of steel-concrete composite structures: “exact” analysis method, simplified method, effective modulus method and method proposed by the European design code, Eurocode 4. The exact analysis method uses the mathematical theory of linear integral operators for presenting viscoelastic relations of the steel-concrete composite structures. The simplified analysis method is derived from the exact method. It adopts the assumption that generalized displacements change linearly with the concrete creep function. Due to this assumption, the problem equations transforms from nonhomogeneous integral equations to nonhomogeneous algebraic equations. The effective modulus method and the method proposed by the Eurocode 4 are algebraic methods where stress-strain relations for concrete are expressed through the effective modulus, which depend on time. On the numerical example of continuous steel-concrete beam, the results obtained using the mentioned approximate and the exact method are compared
- Published
- 2019
21. Comparison of different methods for viscoelastic analysis of composite beams
- Author
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Kostić, Svetlana M. and Deretic-Stojanovic, Biljana
- Subjects
linear integral operators ,viscoelastic analysis ,composite beams ,matrix stiffness method - Abstract
The paper presents and compares four methods for visco-elastic analysis of steel-concrete composite beams. The method denoted as "exact" is based on the use of linear integro-differential operators and besides inevitable approximations of the rheological properties of constituent materials does not introduce other mathematical simplifications. The underlying assumption of the simplified method is that unknown deformations change linearly with the concrete creep function. In the paper, the results of the analysis of continuous composite beam obtained using the mentioned two methods are compared with results of widely used the Effective modulus method and its modified form proposed by Eurocode 4. Results have shown that the simplified method gives solutions closest to the “exact” analysis method.
- Published
- 2019
22. Tačna i približne metode proračuna spregnutih greda od čelika i betona
- Author
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Kostić, Svetlana M., Deretić-Stojanović, Biljana, Kostić, Svetlana M., and Deretić-Stojanović, Biljana
- Abstract
The paper presents four different methods for viscoelastic analysis of steel-concrete composite structures: “exact” analysis method, simplified method, effective modulus method and method proposed by the European design code, Eurocode 4. The exact analysis method uses the mathematical theory of linear integral operators for presenting viscoelastic relations of the steel-concrete composite structures. The simplified analysis method is derived from the exact method. It adopts the assumption that generalized displacements change linearly with the concrete creep function. Due to this assumption, the problem equations transforms from nonhomogeneous integral equations to nonhomogeneous algebraic equations. The effective modulus method and the method proposed by the Eurocode 4 are algebraic methods where stress-strain relations for concrete are expressed through the effective modulus, which depend on time. On the numerical example of continuous steel-concrete beam, the results obtained using the mentioned approximate and the exact method are compared
- Published
- 2019
23. Two numerical models for nonlinear analysis of CFT columns
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Kostić, Svetlana M. and Deretić-Stojanović, Biljana
- Published
- 2018
24. Nosivost spregnutih stubova od kružnih šupljih čeličnih profila ispunjenih betonom
- Author
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Deretić-Stojanović, Biljana, Šumarac, Dragoslav, Bešević, Miroslav, Vukićević, Mirjana, Kostić, Svetlana M., Lazović, Marija M., Deretić-Stojanović, Biljana, Šumarac, Dragoslav, Bešević, Miroslav, Vukićević, Mirjana, Kostić, Svetlana M., and Lazović, Marija M.
- Abstract
Predmet disertacije je određivanje aksijalne nosivosti i stabilnosti kružnih šupljih čeličnihprofila ispunjenih betonom, u daljem CFT stubovi (eng. Concrete Filled Tubes).Problem istraživanja je određivanje stabilnosti CFT stubova, uzimajući u obzir krutostveze. Ovaj problem se javlja u ''top down'' metodi gradnje, kada se nakon izvođenja šipovau koje su ubetonirani CFT stubovi i tavanice na koti 0.00, vrši iskop ispod izvedenetavanice i izvođenje nadzemnog dela konstrukcije. U takvoj situaciji postavlja se pitanjenosivosti i stabilnosti CFT stubova koji se vezuju sa izvedenim šipovima na osnovu koga sedefiniše moguć iskop i izgradnja nadzemnog dela konstukcije...
- Published
- 2018
25. Bending resistance of composite beams with nonductile shear connectors
- Author
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Kostić, Svetlana M., Deretić-Stojanović, Biljana, Kostić, Svetlana M., and Deretić-Stojanović, Biljana
- Abstract
In this paper, the methods for determination of the bending resistance of composite beams with partial shear connection and nonductile shear connectors, according to Eurocode 4, are studied. The Eurocode 4 predicts the use of two calculation methods: the method based on the nonlinear theory and the simplified method that assume linear relation between elastic and plastic bending moment resistance. The algorithm for the nonlinear section analysis is explained in detail. Using the own computer program for nonlinear section analysis, for one composite beam cross section, the differences in results obtained by these two proposed methods are discussed.
- Published
- 2018
26. Bending Resistance of Composite Sections with Nonductile Shear Connectors and Partial Shear Connection
- Author
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Kostić, Svetlana M., Deretić-Stojanović, Biljana, Kostić, Svetlana M., and Deretić-Stojanović, Biljana
- Abstract
The paper presents the nonlinear section analysis for composite steel-concrete beams with different degrees of shear connection. The analysis is fiber based, i.c., integration over the cross section is performed numerically, and any uniaxial nonlinear material model can be assigned to the steel and concrete parts of the cross section or to the reinforcement bars. The analysis assumed full interaction between steel and concrete and therefore, is suitable for analysis of composite steel-concrete beam cross sections with nonductile shear connectors. Its accuracy is verified on few experimental results. The presented section analysis is used in the parameter study in order to evaluate different methods proposed by design codes for determining the bending moment resistance of composite cross sections with nonductile shear connectors and different degrees of shear connection. The following effects are considered: variation of concrete and steel material models, presence of slab reinforcement, and creep of concrete. Special attention is paid on two different constructional methods: propped and unpropped. The weaknesses of the simplified design method in determining bending moment resistance are identified and recommendations for practical design analysis are formulated.
- Published
- 2018
27. Comparative analysis of reinforced concrete and CFT columns in buildings
- Author
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Blagojević, Nikola, Kostić, Svetlana M., and Blagojević, Predrag
- Abstract
Zbornik radova Građevinskog fakulteta
- Published
- 2017
28. An efficient model for nonlinear analysis of circular CFT columns
- Author
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Kostić, Svetlana M. and Deretić-Stojanović, Biljana
- Published
- 2017
29. Fiber konačni element u nelinearnoj analizi kvadratnih spregnutih CFT stubova
- Author
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Blagojević, Nikola, Kostić, Svetlana M., and Stošić, Saša
- Subjects
CFT stub ,fiber beam/column element ,fiber konačni element ,nonlinear analysis ,nelinearna analiza ,CFT column - Abstract
The paper presents nonlinear analysis of square CFT columns using distributed plasticity fiber elements. Behaviour of CFT columns is nonlinear and it is necessary to include different nonlinear effects into the numerical model in order to simulate their behaviour properly. Model proposed in this work considers: nonlinear behaviour of concrete and steel using nonlinear stress-strain models, confinement effect and geometrical nonlinearities. Tests exposed to static loading with different slenderness, different D/t ratio (where D is the total dimension of a cross section and t is the thickness of steel tube) and different loading conditions are analyzed. Stress-strain models that best approximate the behaviour of CFT columns are determined from a detailed parametric study. The proposed numerical model is validated by comparing numerical with experimental results available in the literature. U radu je prikazana nelinearna analiza kvadratnih CFT stubova, pomoću fiber konačnog elemenata raspodeljene plastičnosti. CFT stubove karakteriše nelinearno ponašanje, što je potrebno imati u vidu u numeričkom modelu. Model predložen u ovom radu uzima u obzir sledeće nelinearne uticaje: nelinearno ponašanje betona i čelika primenom odgovarajućih konstitutivnih relacija, efekat utezanja betona i geometrijske nelinearnosti. Analizirani su uzorci izloženi delovanju statičkog opterećenja koji imaju različitu vitkost, odnos D/t (odnos ukupne dimenzije čeličnog profila [D] i debljine čeličnog profila [t]), kao i uzorci izloženi različitim tipovima naprezanja. Na osnovu parametarske analize, određeni su modeli materijala za čelik i beton, kao i njihovi parametri koji najbolje aproksimiraju ponašanje CFT stubova. Tačnost modela proverena je zatim i upoređivanjem sa eksperimentalnim podacima dostupnim u literaturi.
- Published
- 2017
30. NOSIVOST NA SAVIJANJE SPREGNUTIH GREDA SA NEDUKTILNIM MOŽDANICIMA
- Author
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Kostić, Svetlana M., primary and Deretić-Stojanović, Biljana, additional
- Published
- 2018
- Full Text
- View/download PDF
31. Formulacija fiber elementa prilikom nelinearne analize ramova
- Author
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Kostić, Svetlana M. and Deretić-Stojanović, Biljana
- Subjects
metoda sila ,fiber based beam/column element ,displacement formulation ,raspodeljena plastičnost ,fiber konačni element ,metoda deformacija ,force formulation ,distributed plasticity - Abstract
The paper discusses two formulations for the fiber based distributed plasticity beam/column element. For force based and displacement based formulations, basic details and main differences are emphasized. The differences in results of analysis when elements with these two formulations are used are demonstrated on two numerical examples. The first example involves the nonlinear static pushover analysis of low-rise frame with distributed element loading. The second example is nonlinear time history analysis of two-story frame subjected to earthquake loading. The differences in global and local response depending on the used finite element discretization are shown. In conclusion, the advantages of force based formulation and directions for the use of the two elements are summarized. U radu su prikazane dve formulacije fiber konačnog elementa raspodeljene plastičnosti. Za metodu sila i metodu deformacija, ukazano je na osnovne razlike dve metode. Razlike u rezultatima analize koje se dobijaju primenom fiber elementa prema ove dve formulacije prikazane su putem dva numerička primera. Prvi primer obuhvata statičku pushover analizu rama s raspodeljenim opterećenjem duž greda. Drugi primer je nelinearna dinamička analiza dvospratnog rama izloženog zemljotresnom opterećenju. Prikazane su razlike kod dobijenog globalnog i lokalnog odgovora u zavisnosti od formulacije i diskretizacije rama. U zaključku, rezimirane su primene dve formulacije fiber elementa i date napomene u vezi s njihovim korišćenjem.
- Published
- 2016
32. A simplified matrix stiffness method for analysis of composite and prestressed beams
- Author
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Deretić-Stojanović, Biljana, Kostić, Svetlana M., Deretić-Stojanović, Biljana, and Kostić, Svetlana M.
- Abstract
The paper presents the simplified matrix stiffness method for analysis of composite and prestressed beams. The method is based on the previously developed "exact" analysis method that uses the mathematical theory of linear integral operators to derive all relations without any mathematical simplifications besides inevitable idealizations related to the material rheological properties. However, the method is limited since the closed-form solution can be found only for specific forms of the concrete creep function. In this paper, the authors proposed the simplified analysis method by introducing the assumption that the unknown deformations change linearly with the concrete creep function. Adopting this assumption, the nonhomogeneous integral system of equations of the "exact" method simplifies to the system of algebraic equations that can be easily solved. Therefore, the proposed method is more suitable for practical applications. Its high level of accuracy in comparison to the "exact" method is preserved, which is illustrated on the numerical example. Also, it is more accurate than the well-known EM method.
- Published
- 2017
33. Fiber finite element in nonlinear analysis of square CFT columns
- Author
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Blagojević, Nikola, Kostić, Svetlana M., Stošić, Saša, Blagojević, Nikola, Kostić, Svetlana M., and Stošić, Saša
- Abstract
The paper presents nonlinear analysis of square CFT columns using distributed plasticity fiber elements. Behaviour of CFT columns is nonlinear and it is necessary to include different nonlinear effects into the numerical model in order to simulate their behaviour properly. Model proposed in this work considers: nonlinear behaviour of concrete and steel using nonlinear stress-strain models, confinement effect and geometrical nonlinearities. Tests exposed to static loading with different slenderness, different D/t ratio (where D is the total dimension of a cross section and t is the thickness of steel tube) and different loading conditions are analyzed. Stress-strain models that best approximate the behaviour of CFT columns are determined from a detailed parametric study. The proposed numerical model is validated by comparing numerical with experimental results available in the literature., U radu je prikazana nelinearna analiza kvadratnih CFT stubova, pomoću fiber konačnog elemenata raspodeljene plastičnosti. CFT stubove karakteriše nelinearno ponašanje, što je potrebno imati u vidu u numeričkom modelu. Model predložen u ovom radu uzima u obzir sledeće nelinearne uticaje: nelinearno ponašanje betona i čelika primenom odgovarajućih konstitutivnih relacija, efekat utezanja betona i geometrijske nelinearnosti. Analizirani su uzorci izloženi delovanju statičkog opterećenja koji imaju različitu vitkost, odnos D/t (odnos ukupne dimenzije čeličnog profila [D] i debljine čeličnog profila [t]), kao i uzorci izloženi različitim tipovima naprezanja. Na osnovu parametarske analize, određeni su modeli materijala za čelik i beton, kao i njihovi parametri koji najbolje aproksimiraju ponašanje CFT stubova. Tačnost modela proverena je zatim i upoređivanjem sa eksperimentalnim podacima dostupnim u literaturi.
- Published
- 2017
34. Fiber element formulation for inelastic frame analysis
- Author
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Kostić, Svetlana M., Deretić-Stojanović, Biljana, Kostić, Svetlana M., and Deretić-Stojanović, Biljana
- Abstract
The paper discusses two formulations for the fiber based distributed plasticity beam/column element. For force based and displacement based formulations, basic details and main differences are emphasized. The differences in results of analysis when elements with these two formulations are used are demonstrated on two numerical examples. The first example involves the nonlinear static pushover analysis of low-rise frame with distributed element loading. The second example is nonlinear time history analysis of two-story frame subjected to earthquake loading. The differences in global and local response depending on the used finite element discretization are shown. In conclusion, the advantages of force based formulation and directions for the use of the two elements are summarized., U radu su prikazane dve formulacije fiber konačnog elementa raspodeljene plastičnosti. Za metodu sila i metodu deformacija, ukazano je na osnovne razlike dve metode. Razlike u rezultatima analize koje se dobijaju primenom fiber elementa prema ove dve formulacije prikazane su putem dva numerička primera. Prvi primer obuhvata statičku pushover analizu rama s raspodeljenim opterećenjem duž greda. Drugi primer je nelinearna dinamička analiza dvospratnog rama izloženog zemljotresnom opterećenju. Prikazane su razlike kod dobijenog globalnog i lokalnog odgovora u zavisnosti od formulacije i diskretizacije rama. U zaključku, rezimirane su primene dve formulacije fiber elementa i date napomene u vezi s njihovim korišćenjem.
- Published
- 2016
35. Parametric Study of Circular CFT Column Capacity According to Eurocode 4
- Author
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Kostić, Svetlana M., Lazović, Marija, Deretić-Stojanović, Biljana, and Stošić, Saša
- Abstract
In the paper, a simplified method for design of circular composite CFT columns according to the European standard for deisgn of composite steel and concrete structures – Eurocode 4 is presented. Veri¬fication of the column section capacity under axial compression and bending is based on the concept of limit states and determination of the N-M interaction curve. For eight the most common in practice CFT columns, continuous N-M interaction curves are constructed. In addition, for these selected sections, the influence of the variation of the concrete and steel classes on the column cross-section capacity is analyzed. Given interaction curves simplify the design of composite columns and the choice of dimensions of CFT column and its steel and concrete classes. Zbornik radova Građevinskog fakulteta
- Published
- 2014
36. Nosivost na savijanje spregnutog preseka sa parcijalnim smičućim spojem prema EC4
- Author
-
Deretić-Stojanović, Biljana, Kostić, Svetlana M., and Lazović, Marija
- Abstract
Bending resistance of a composite steel and concrete section apart from shape and dimensions of a cross section and mechanical characteristics of materials, depends also on type of shear connection, i.e. connectors and shear steel-concrete interface. In the paper, ductile and nonductile headed studs are considered. Bending resistance of composite sections with partial shear connection, which is a connection where a number of shear studs is smaller than necessary for fully plastic bending resistance of a section to be achieved, is analysed. The reduced bending resistance is found. The calculaton in accordance with Eurocode 4 is presented. Nosivost na savijanje spregnutog preseka od čelika i betona pored oblika i dimenzija poprečnog preseka i mehaničkih karakteristika materijala, zavisi i od načina sprezanja, tj. tipova sredstava za sprezanja i oblikovanja kontaktnog (smičućeg) spoja između betona i čelika. U radu se koriste duktilni i neduktilni moždanici sa glavom. Određuje se nosivost na savijanje spregnutih preseka sa parcijalnim smičućim spojem u kome, za razliku od punog smičućeg spoja, broj moždanika nije dovoljan da se ostvari moment pune nosivosti, tako da se određuje redukovani moment nosivosti. Proračun se sprovodi prema Evrokodu 4.
- Published
- 2014
37. Model generalisane plastičnosti kod nelinearne analize prostornih okvirnih konstrukcija
- Author
-
Kostić, Svetlana M., Šumarac, Dragoslav, Deretić-Stojanović, Biljana, and Prokić, Aleksandar
- Subjects
cross-section ,computational efficiency ,rezultantna plastičnost ,beam/column element ,poprečni presek ,resultant plasticity ,nonlinear analysis ,generalisana plastičnost ,nelinearna analiza ,generalized plasticity ,gredni konačni element ,kompjuterska efikasnost - Abstract
Predmet disertacije je efikasna nelinearna analiza okvirnih konstrukcija grednim konačnim elementima sa težištem na modeliranju materijalnih nelinearnosti. Geometrijska nelinearnost se uzima u obzir poznatim metodama. U tezi su analizirana i unapređena dva gredna konačna elementa: fiber element i element koncentrisane plastičnosti i napisan je sopstveni kompjuterski program kojim su elementi implementirani u postojeći open-source program za analizu konstrukcija – FEDEASLab. Tokom rada na tezi, ostvareni su sledeći ciljevi. Izvršena je optimizacija integracije poprečnog preseka čeličnih i armirano-betonskih elemenata u cilju poboljšanja efikasnosti fiber elemenata kako pri cikličnom pseudo-statičkom opterećenju, tako i pri nelinearnoj dinamičkoj analizi pojedinih delova i čitave konstrukcije. Formulisana su praktična pravila i definisane jasne smernice za diskretizaciju poprečnog preseka čeličnog I profila i pravougaonog armiranobetonskog preseka, u zavisnosti od vrste analize koja se sprovodi i željene tačnosti. Razvijen je novi konačni elementa iz grupe elemenata koncentrisane plastičnosti koji prevazilazi ograničenja postojećeg elasto-plastičnog elementa kao što su nemogućnost opisivanja postepene plastifikacije poprečnog preseka i opisivanja ponašanja materijala sa ojačanjem. Pri tome, element je zadržao svoju veliku kompjutersku efikasnost koja je osnovna prednost elemenata koncentrisane plastičnosti. Za određivanje stanja elementa razvijena su dva algoritma prema “general closest point projection” i “convex cutting plane” return mapping algoritmima i analizirana je zavisnost konvergencije od implementiranog algoritma. Mogućnosti novog elementa za modeliranje okvirnih konstrukcija pri delovanju statičkog i dinamičkog opterećenja su potvrđene kroz niz numeričkih primera. Specijalna pažnja je posvećena primeni novog GP elementa za modeliranje CFT stubova spregnutih konstrukcija... The objective of this study is the efficient nonlinear analysis of space frames with beam/column finite elements considering material nonlinearity. Geometric nonlinearity is taken into account using known methods. Two different nonlinear beam/column elements are analyzed and improved: a fiber element and a concentrated plasticity element. Own computer code is written and implemented into the existing matlab toolbox for nonlinear structural analysis – FEDEASLab. During this study, the following objectives are achieved. By the optimization of the number and position of material integration points at monitored steel and reinforced concrete cross-sections, the significant improvement in efficiency of the fiber beam-column element under cyclic static and dynamic loading conditions is gained. The practical rules for an efficient discretization of steel wide-flange sections and rectangular reinforced-concrete sections are defined, depending on the desired level of accuracy and the type of analysis. In addition, the new three-dimensional nonlinear beam-column element is formulated. The element is of concentrated plasticity type and overcomes the common limitations of the existing elasto-plastic elements, such as the inability to describe gradual plastification of a cross-section and the hardening behavior. Also, the element keeps its high computational efficiency which is one benefit of concentrated plasticity elements. Two algorithms for element state determination are developed in accordance with the general closest point and convex cutting plane return mapping algorithms. Their influence on element convergation is studied. The ability of the element to simulate frame behavior is confirmed on a number of numerical examples. The special attention is devoted to model CFT composite column behavior...
- Published
- 2013
38. Applcation of generalized plasticity model in square CFT column analysis
- Author
-
Kostić, Svetlana M., Filippou, Filip C., and Deretić-Stojanović, Biljana
- Subjects
Beam-column element ,Resultant plasticity ,Generalized plasticity ,Nonlinear analysis ,CFT columns - Abstract
In the paper, an efficient three-dimensional concentrated plasticity nonlinear beam-column element is used for the simulation of the response of square CFT columns. The element adopts the concept of the generalized plasticity material model for the section resultant - element deformation relation and has plastic hinges located at the ends of the element and described with yield and limit surfaces. Determination of the adequate element parameters which are essential for a successful description of the CFT member behavior is discussed. Among these parameters, most important are the stiffness and yield surface parameters.
- Published
- 2013
39. Generalized plasticity model for nonlinear space frame analysis
- Author
-
Kostić, Svetlana M., Šumarac, Dragoslav, Deretić-Stojanović, Biljana, and Prokić, Aleksandar
- Subjects
cross-section ,computational efficiency ,rezultantna plastičnost ,beam/column element ,poprečni presek ,resultant plasticity ,nonlinear analysis ,generalisana plastičnost ,nelinearna analiza ,generalized plasticity ,gredni konačni element ,kompjuterska efikasnost - Abstract
Predmet disertacije je efikasna nelinearna analiza okvirnih konstrukcijagrednim konačnim elementima sa težištem na modeliranju materijalnihnelinearnosti. Geometrijska nelinearnost se uzima u obzir poznatim metodama.U tezi su analizirana i unapređena dva gredna konačna elementa: fiber elementi element koncentrisane plastičnosti i napisan je sopstveni kompjuterskiprogram kojim su elementi implementirani u postojeći open-source program zaanalizu konstrukcija – FEDEASLab.Tokom rada na tezi, ostvareni su sledeći ciljevi. Izvršena je optimizacijaintegracije poprečnog preseka čeličnih i armirano-betonskih elemenata u ciljupoboljšanja efikasnosti fiber elemenata kako pri cikličnom pseudo-statičkomopterećenju, tako i pri nelinearnoj dinamičkoj analizi pojedinih delova i čitavekonstrukcije. Formulisana su praktična pravila i definisane jasne smernice zadiskretizaciju poprečnog preseka čeličnog I profila i pravougaonog armiranobetonskogpreseka, u zavisnosti od vrste analize koja se sprovodi i željenetačnosti. Razvijen je novi konačni elementa iz grupe elemenata koncentrisaneplastičnosti koji prevazilazi ograničenja postojećeg elasto-plastičnog elementakao što su nemogućnost opisivanja postepene plastifikacije poprečnog preseka iopisivanja ponašanja materijala sa ojačanjem. Pri tome, element je zadržao svojuveliku kompjutersku efikasnost koja je osnovna prednost elemenatakoncentrisane plastičnosti. Za određivanje stanja elementa razvijena su dvaalgoritma prema “general closest point projection” i “convex cutting plane”return mapping algoritmima i analizirana je zavisnost konvergencije odimplementiranog algoritma. Mogućnosti novog elementa za modeliranjeokvirnih konstrukcija pri delovanju statičkog i dinamičkog opterećenja supotvrđene kroz niz numeričkih primera. Specijalna pažnja je posvećena primeninovog GP elementa za modeliranje CFT stubova spregnutih konstrukcija... The objective of this study is the efficient nonlinear analysis of space frameswith beam/column finite elements considering material nonlinearity.Geometric nonlinearity is taken into account using known methods. Twodifferent nonlinear beam/column elements are analyzed and improved: a fiberelement and a concentrated plasticity element. Own computer code is writtenand implemented into the existing matlab toolbox for nonlinear structuralanalysis – FEDEASLab.During this study, the following objectives are achieved. By the optimization ofthe number and position of material integration points at monitored steel andreinforced concrete cross-sections, the significant improvement in efficiency ofthe fiber beam-column element under cyclic static and dynamic loadingconditions is gained. The practical rules for an efficient discretization of steelwide-flange sections and rectangular reinforced-concrete sections are defined,depending on the desired level of accuracy and the type of analysis. In addition,the new three-dimensional nonlinear beam-column element is formulated. Theelement is of concentrated plasticity type and overcomes the commonlimitations of the existing elasto-plastic elements, such as the inability todescribe gradual plastification of a cross-section and the hardening behavior.Also, the element keeps its high computational efficiency which is one benefitof concentrated plasticity elements. Two algorithms for element statedetermination are developed in accordance with the general closest point andconvex cutting plane return mapping algorithms. Their influence on elementconvergation is studied. The ability of the element to simulate frame behavior isconfirmed on a number of numerical examples. The special attention is devotedto model CFT composite column behavior...
- Published
- 2013
40. Prilog proračunu spregnutih stubova od čelika i betona
- Author
-
Kostić, Svetlana M., Stošić, Saša, and Deretić-Stojanović, Biljana
- Subjects
second-order effects ,uticaji drugog reda ,interaction curves ,klasa betona ,krive interakcije ,concrete class ,composite columns ,spregnuti stubovi - Abstract
In the paper, design of composite steel-concrete column according to Eurocode 4 is illustrated on detailed numerical example. The theoretical foundations of the Eurocode 4 design procedure is explained before, in the paper of the same group of authors. The resistance of a composite column subjected to axial compression and biaxial bending is determined. Capacity and stability analysis of the individual composite column under axial compression is based on the use of European buckling curves. The verification of column bearing capacity is based on use of interaction diagram determined from capacity analysis of composite cross-section. Second order effects and effects of creep and shrinkage of concrete are taken into account. For the cross section of fully encased column with I steel section, the dependency of concrete class and reinforcement ratio on ultimate cross section capacity is studied. For this type of composite cross section and 6 different steel sections, the continuous interaction curves are constructed, for common concrete classes. These curves are very practical since simplify the design of composite columns and choice of dimensions of concrete section, steel section and concrete class. U radu se, na detaljnom brojnom primeru spregnutog stuba kod koga je čelični I profil potpuno obložen betonom, ilustruje proračun nosivosti spregnutih stubova prema važećem evropskom standardu za proračun spregnutih konstrukcija od čelika i betona - Evrokodu 4 koji je detaljno objašnjen u prethodnom radu iste grupe autora. Određena je nosivost spregnutog stuba izloženog samo aksijalnom pritisku i izloženog istovremenom uticaju aksijalnog pritiska i savijanja momentima. Analiza nosivosti, a time i stabilnosti pri aksijalnom pritisku izolovanog stuba bazira se na primeni Evropskih krivih izvijanja. Provera nosivosti pri kombinaciji aksijalnog pritiska i savijanja momentima zasniva se na interakcionoj krivoj koja se određuje pri analizi nosivosti poprečnog preseka posmatranog stuba. Uzeti su u obzir uticaji drugog reda kao i uticaji skupljanja i tečenja betona. Za poprečni presek spregnutog stuba kod koga je čelični I profil potpuno obložen betonom, prikazan je uticaj marke betona i procenta armiranja na graničnu nosivost poprečnog preseka. Za dati tip spregnutog poprečnog preseka i nekoliko valjanih čeličnih profila, konstruisane su kontinualne krive interakcije za uobičajene klase betona. Ove krive su vrlo pogodne za praktičnu primenu i olakšavaju dimenzionisanje spregnutih stubova, budući da pojednostavljuju izbor dimenzija betonskog dela preseka, čeličnog profila i klase betona.
- Published
- 2011
41. Proračun spregnutih stubova od čelika i betona
- Author
-
Deretić-Stojanović, Biljana, Kostić, Svetlana M., and Stošić, Saša
- Subjects
theory of plasticity ,second-order effects ,uticaji drugog reda ,interaction curves ,teorija plastičnosti ,krive interakcije ,composite columns ,spregnuti stubovi ,teorija elastičnosti ,theory of elasticity - Abstract
The paper deals with the design of composite steelconcrete columns according to Eurocode 4. The simplified design method and limitations for its use are explained in details. A column is analysed as an individual member, subjected to lateral loadings over the column height and axial forces and bending moments at the element ends, determined from global analysis, i.e. from the analysis of the whole structure. The resistance of a composite column subjected to axial compression and biaxial bending is analysed. The verification of bending resistance of a composite steelconcrete column cross section is based on theory of plasticity, while resistance of individual column is based on the theory of elasticity, but include the second-order effects and imperfections. Capacity and stability analysis under axial compression is based on the use of European buckling curves. The verification of column bearing capacity is based on the use of interaction diagram determined from capacity analysis of composite cross-section. Since the Eurocodes are being accepted as our national standards, the main aim of this paper is to simplify the use of this standard in our ordinary engineering practice through the detailed explanations of the design procedure of composite steel-concrete columns. U radu se prikazuje proračun nosivosti spregnutih stubova prema važećem evropskom standardu za proračun spregnutih konstrukcija od čelika i betona - Evrokodu 4 (EC4). Daje se detaljni prikaz približne metode proračuna i uslovi za njenu primenu. Stub se posmatra kao izolovani element opterećen mogućim poprečnim opterećenjem i opterećen na krajevima aksijalnom silom pritiska i momentima određenim globalnom analizom tj. analizom konstrukcije kojoj pripada posmatrani stub. Analizira se nosivost spregnutog stuba izloženog samo aksijalnom pritisku i izloženog istovremenom uticaju aksijalnog pritiska i savijanja momentima. Provera nosivosti poprečnog preseka spregnutog stuba vrši se u okviru teorije plastičnosti, a analiza nosivosti izolovanog stuba u okviru teorije elastičnosti, vodeći računa o uticajima drugog reda i imperfekcijama stuba. Analiza nosivosti, a time i stabilnosti, pri aksijalnom pritisku izolovanog stuba bazira se na primeni Evropskih krivih izvijanja. Provera nosivosti pri kombinaciji aksijalnog pritiska i savijanja momentima zasniva se na interakcionom dijagramu koji se određuje pri analizi nosivosti poprečnog preseka posmatranog stuba. Kako je u toku usvajanje Evrokodova za konstrukcije kao naših zvaničnih standarda, cilj ovog rada je da detaljnim prikazom proračuna spregnutih stubova prema Evrokodu 4 olakša primenu ovog standarda u našoj inženjerskoj praksi.
- Published
- 2011
42. An efficient beam-column element for nonlinear 3D frame analysis
- Author
-
Kostić, Svetlana M., Filippou, Filip C., and Lee, C.-L.
- Subjects
Beam-column element ,Resultant plasticity ,Generalized plasticity ,Nonlinear analysis - Abstract
A three-dimensional nonlinear beam-column element for the simulation of the global and local response of frames under monotonic and cyclic loading conditions is pre-sented. The element belongs to the group of concentrated plasticity models, with plastic hinges located at the ends of the element and described with yield and limit surfaces. The concept of generalized plasticity, originally developed for material plasticity, is extended to force resultants in the element formulation. The element takes into account the interaction of the axial force and the bending moments about the principal axes of the cross section and the hardening behavior. The gradual yielding of the cross section is described by the asymptoti-cal approaching of the limit surface.
- Published
- 2011
43. Redistribucija uticaja u linearno elastičnoj analizi spregnutih kontinualnih nosača od čelika i betona prema Evrokodu 4
- Author
-
Kostić, Svetlana M., Deretić-Stojanović, Biljana, and Stošić, Saša
- Subjects
shrinkage ,skupljanje ,cracking of concrete ,spregnute konstrukcije ,tečenje ,ispucalost betona ,composite structures ,creep ,shear-lag - Abstract
Different analytical methods, with different levels of approximations and accuracy, are available for analysis of continuous composite steel-concrete beams. The Eurocode 4 recommends few simple methods for calculation of creep, shrinkage, cracking of concrete and shear lag effects that are explained in the paper. Through the numerical examples of four continuous composite steel-concrete beams, the proposed methods of analyses are evaluated and compared. Practical recommendations for analysis of this type of girders are formulated. Za analizu spregnutih kontinualnih nosača od čelika i betona postoje različite analitičke metode, različitog stepena tačnosti. Evrokod 4 dozvoljava i preporučuje nekoliko jednostavnih metoda kojima se u proračun uvode nelinearni efekti kao što su skupljanje i tečenje betona, ispicalost betonske ploče i shear-lag efekat, i one su objašnjene u radu. Kroz numeričku analizu četiri spregnuta kontinualna nosača ove metode su upoređene i date su praktične preporuke za analizu ove grupe nosača.
- Published
- 2011
44. Proračun podužnog smicanja u betonskoj ploči spregnutog nosača prema EC4
- Author
-
Deretić-Stojanović, Biljana, Kostić, Svetlana M., and Marković, Nenad
- Subjects
smicanje ,shear ,spregnute konstrukcije ,betonska ploča ,concrete slab ,composite structures - Abstract
In this paper, the analysis of longitudinal shear in concrete slab, according to Eurocode 4 (EN 1994-1-1:2004), is shown. The potential surfaces of shear failure in solid and composite slab are analyzed. For each potential surface of shear failure, the corresponding length is defined. The transverse reinforcement should be determined from the condition that, for any potential surface of shear failure, the design longitudinal shear per unit length (shear flow) is not greater than the longitudinal shear resistance of the slab per unit length. The longitudinal shear resistance of concrete slab per unit length should be determined according to EN 1992-1-1. The rules for transverse reinforcement are based on a truss analogy, i.e. the concrete slab is considered as a truss system that has compressed concrete struts and tensioned reinforcement (chords).The failure occurs when either the reinforcement yields or the concrete struts fail in compression. The transverse reinforcement in the concrete slab transfers the shear stresses from studs (shear connectors) and ensures that the premature failure of the slab will not occur. U radu se prikazuje proračun podužnog smicanja u betonskoj ploči prema Evrokodu 4 (EN 1994-1-1:2004). Analiziraju se potencijalne površine loma usled podužnog smicanja, u punoj i spregnutoj betonskoj ploči. Za svaku potencijalnu površinu loma definiše se odgovarajuća dužina površine smicanja. Proračun nosivosti pri podužnom smicanju se zasniva na uslovu da proračunski podužni napon smicanja, bilo koje potencijalne površine loma usled podužnog smicanja u okviru ploče, ne bude veći od proračunske nosivosti pri podužnom smicanju. Proračunska nosivost pri podužnom smicanju betonske ploče se određuje u skladu sa EN 1992-1-1. Ovaj proračun se zasniva na modelu rešetke, tj. betonska ploča se posmatra kao sistem kosih (dijagonalnih) pritisnutih betonskih štapova kombinovan sa zategama koje predstavlja poprečna zategnuta armatura. Gubitak nosivosti (lom) betonske ploče nastaje ako dođe do tečenja (loma) u armaturi ili ako dođe do drobljenja betona u pritisnutim štapovima. U betonskoj ploči se obezbeđuje adekvatna površina poprečne armature koja će da prenese smičuće napone iz moždanika i obezbedi da ne dođe do prevremenog loma u betonu.
- Published
- 2010
45. Bending resistance of composite section with partial shear connection according to EC4
- Author
-
Deretić-Stojanović, Biljana, Kostić, Svetlana M., Lazović, Marija, Deretić-Stojanović, Biljana, Kostić, Svetlana M., and Lazović, Marija
- Abstract
Bending resistance of a composite steel and concrete section apart from shape and dimensions of a cross section and mechanical characteristics of materials, depends also on type of shear connection, i.e. connectors and shear steel-concrete interface. In the paper, ductile and nonductile headed studs are considered. Bending resistance of composite sections with partial shear connection, which is a connection where a number of shear studs is smaller than necessary for fully plastic bending resistance of a section to be achieved, is analysed. The reduced bending resistance is found. The calculaton in accordance with Eurocode 4 is presented., Nosivost na savijanje spregnutog preseka od čelika i betona pored oblika i dimenzija poprečnog preseka i mehaničkih karakteristika materijala, zavisi i od načina sprezanja, tj. tipova sredstava za sprezanja i oblikovanja kontaktnog (smičućeg) spoja između betona i čelika. U radu se koriste duktilni i neduktilni moždanici sa glavom. Određuje se nosivost na savijanje spregnutih preseka sa parcijalnim smičućim spojem u kome, za razliku od punog smičućeg spoja, broj moždanika nije dovoljan da se ostvari moment pune nosivosti, tako da se određuje redukovani moment nosivosti. Proračun se sprovodi prema Evrokodu 4.
- Published
- 2014
46. Time-dependent analysis of composite and prestressed beams using the slope deflection method
- Author
-
Deretić-Stojanović, Biljana, primary and Kostić, Svetlana M., additional
- Published
- 2014
- Full Text
- View/download PDF
47. Model generalisane plastičnosti kod nelinearne analize prostornih okvirnih konstrukcija
- Author
-
Šumarac, Dragoslav, Deretić-Stojanović, Biljana, Prokić, Aleksandar, Kostić, Svetlana M., Šumarac, Dragoslav, Deretić-Stojanović, Biljana, Prokić, Aleksandar, and Kostić, Svetlana M.
- Abstract
Predmet disertacije je efikasna nelinearna analiza okvirnih konstrukcija grednim konačnim elementima sa težištem na modeliranju materijalnih nelinearnosti. Geometrijska nelinearnost se uzima u obzir poznatim metodama. U tezi su analizirana i unapređena dva gredna konačna elementa: fiber element i element koncentrisane plastičnosti i napisan je sopstveni kompjuterski program kojim su elementi implementirani u postojeći open-source program za analizu konstrukcija – FEDEASLab. Tokom rada na tezi, ostvareni su sledeći ciljevi. Izvršena je optimizacija integracije poprečnog preseka čeličnih i armirano-betonskih elemenata u cilju poboljšanja efikasnosti fiber elemenata kako pri cikličnom pseudo-statičkom opterećenju, tako i pri nelinearnoj dinamičkoj analizi pojedinih delova i čitave konstrukcije. Formulisana su praktična pravila i definisane jasne smernice za diskretizaciju poprečnog preseka čeličnog I profila i pravougaonog armiranobetonskog preseka, u zavisnosti od vrste analize koja se sprovodi i željene tačnosti. Razvijen je novi konačni elementa iz grupe elemenata koncentrisane plastičnosti koji prevazilazi ograničenja postojećeg elasto-plastičnog elementa kao što su nemogućnost opisivanja postepene plastifikacije poprečnog preseka i opisivanja ponašanja materijala sa ojačanjem. Pri tome, element je zadržao svoju veliku kompjutersku efikasnost koja je osnovna prednost elemenata koncentrisane plastičnosti. Za određivanje stanja elementa razvijena su dva algoritma prema “general closest point projection” i “convex cutting plane” return mapping algoritmima i analizirana je zavisnost konvergencije od implementiranog algoritma. Mogućnosti novog elementa za modeliranje okvirnih konstrukcija pri delovanju statičkog i dinamičkog opterećenja su potvrđene kroz niz numeričkih primera. Specijalna pažnja je posvećena primeni novog GP elementa za modeliranje CFT stubova spregnutih konstrukcija..., The objective of this study is the efficient nonlinear analysis of space frames with beam/column finite elements considering material nonlinearity. Geometric nonlinearity is taken into account using known methods. Two different nonlinear beam/column elements are analyzed and improved: a fiber element and a concentrated plasticity element. Own computer code is written and implemented into the existing matlab toolbox for nonlinear structural analysis – FEDEASLab. During this study, the following objectives are achieved. By the optimization of the number and position of material integration points at monitored steel and reinforced concrete cross-sections, the significant improvement in efficiency of the fiber beam-column element under cyclic static and dynamic loading conditions is gained. The practical rules for an efficient discretization of steel wide-flange sections and rectangular reinforced-concrete sections are defined, depending on the desired level of accuracy and the type of analysis. In addition, the new three-dimensional nonlinear beam-column element is formulated. The element is of concentrated plasticity type and overcomes the common limitations of the existing elasto-plastic elements, such as the inability to describe gradual plastification of a cross-section and the hardening behavior. Also, the element keeps its high computational efficiency which is one benefit of concentrated plasticity elements. Two algorithms for element state determination are developed in accordance with the general closest point and convex cutting plane return mapping algorithms. Their influence on element convergation is studied. The ability of the element to simulate frame behavior is confirmed on a number of numerical examples. The special attention is devoted to model CFT composite column behavior...
- Published
- 2013
48. Design of circular composite CFT columns according to Eurocode 4
- Author
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Lazović, Marija, Deretić-Stojanović, Biljana, Kostić, Svetlana M., Stošić, Saša, Lazović, Marija, Deretić-Stojanović, Biljana, Kostić, Svetlana M., and Stošić, Saša
- Abstract
This paper presents a simplified method for calculation of bearing capacity of composite columns according to the European standard for the calculation of composite steel and concrete structures - Eurocode 4. Resistance analysis, and also the stability analysis of the isolated column under axial compression is based on the application of the European buckling curves. Verification of the column capacity subjected to axial compression and bending is based on the N-M interaction curve. For the presented numerical example, construction of the interaction curve is explained for the composite column with the circular concrete filled steel tube cross section. The influence of the concrete core confinement on the increase of concrete strength and the column bearing capacity of a CFT column is discussed. The [N, M] coordinates of the continuous interaction curve are calculated from the derived expressions for determination of the area and the static moment of the cut-off portion of the circular CFT section. For the presented example, the effects of the strength of concrete, strength of steel and the diameter and wall thickness of the steel tube on the composite CFT cross section capacity is discussed., U radu je prikazana uprošćena metoda proračuna nosivosti spregnutih stubova prema važećem evropskom standardu za proračun spregnutih konstrukcija od čelika i betona - Evrokodu 4. Analiza nosivosti, a time i stabilnosti pri aksijalnom pritisku izolovanog stuba bazira se na primeni evropskih krivih izvijanja. Provera nosivosti pri kombinaciji aksijalnog pritiska i momenta savijanja zasniva se na N-M interakcionoj krivoj. Na konkretnom brojnom primeru prikazano je konstruisanje krive interakcije za spregnuti stub poprečnog preseka u obliku kružnog šupljeg profila ispunjenog betonom. Razmatran je uticaj utezanja betona na povećanje čvrstoće betona i nosivosti preseka CFT stuba. Izvođenjem izraza za određivanje odsečenih površina i statičkih momenata odsečenih površina kod kružnog CFT stuba, a zatim i određivanjem koordinata tačaka koje pripadaju krivoj interakcije, konstruisana je kontinualana kriva interakcije. Za navedeni poprečni presek kod proračuna nosivosti pri kombinaciji aksijalnog pritiska i savijanja, analizirani su sledeći uticaji na graničnu nosivost spregnutog preseka: uticaj promene marke betona, uticaj promene klase čelika i uticaj promene odnosa prečnika i debljine čeličnog profila.
- Published
- 2013
49. Design of circular composite CFT columns according to Eurocode 4
- Author
-
Lazović Radovanović, Marija, Deretić-Stojanović, Biljana, Kostić, Svetlana M., Stošić, Saša, Lazović Radovanović, Marija, Deretić-Stojanović, Biljana, Kostić, Svetlana M., and Stošić, Saša
- Abstract
This paper presents a simplified method for calculation of bearing capacity of composite columns according to the European standard for the calculation of composite steel and concrete structures - Eurocode 4. Resistance analysis, and also the stability analysis of the isolated column under axial compression is based on the application of the European buckling curves. Verification of the column capacity subjected to axial compression and bending is based on the N-M interaction curve. For the presented numerical example, construction of the interaction curve is explained for the composite column with the circular concrete filled steel tube cross section. The influence of the concrete core confinement on the increase of concrete strength and the column bearing capacity of a CFT column is discussed. The [N, M] coordinates of the continuous interaction curve are calculated from the derived expressions for determination of the area and the static moment of the cut-off portion of the circular CFT section. For the presented example, the effects of the strength of concrete, strength of steel and the diameter and wall thickness of the steel tube on the composite CFT cross section capacity is discussed., U radu je prikazana uprošćena metoda proračuna nosivosti spregnutih stubova prema važećem evropskom standardu za proračun spregnutih konstrukcija od čelika i betona - Evrokodu 4. Analiza nosivosti, a time i stabilnosti pri aksijalnom pritisku izolovanog stuba bazira se na primeni evropskih krivih izvijanja. Provera nosivosti pri kombinaciji aksijalnog pritiska i momenta savijanja zasniva se na N-M interakcionoj krivoj. Na konkretnom brojnom primeru prikazano je konstruisanje krive interakcije za spregnuti stub poprečnog preseka u obliku kružnog šupljeg profila ispunjenog betonom. Razmatran je uticaj utezanja betona na povećanje čvrstoće betona i nosivosti preseka CFT stuba. Izvođenjem izraza za određivanje odsečenih površina i statičkih momenata odsečenih površina kod kružnog CFT stuba, a zatim i određivanjem koordinata tačaka koje pripadaju krivoj interakcije, konstruisana je kontinualana kriva interakcije. Za navedeni poprečni presek kod proračuna nosivosti pri kombinaciji aksijalnog pritiska i savijanja, analizirani su sledeći uticaji na graničnu nosivost spregnutog preseka: uticaj promene marke betona, uticaj promene klase čelika i uticaj promene odnosa prečnika i debljine čeličnog profila.
- Published
- 2013
50. Section Discretization of Fiber Beam-Column Elements for Cyclic Inelastic Response
- Author
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Kostić, Svetlana M., Filippou, Filip C., Kostić, Svetlana M., and Filippou, Filip C.
- Abstract
The paper presents studies of the effect of the number of material integration points at the monitored sections of fiber beam-column elements on the local response of typical structural cross sections under an extensive set of cyclic biaxial load conditions with constant and variable axial load. The study covers wide-flange steel sections and rectangular reinforced concrete sections. The integration over the section uses the midpoint rule and shows that a standard section discretization with relatively few fibers is a good compromise between accuracy and economy of means. The proposed coarse section discretization schemes are computationally efficient while ensuring the accurate representation of important aspects of the three-dimensional response of structural members, such as interaction of axial force with biaxial bending moment, effect of residual stress in steel members, and effect of cracking in reinforced concrete members. The local strain response is also represented with good accuracy by the coarse discretization schemes. DOI: 10.1061/(ASCE)ST.1943-541X.0000501.
- Published
- 2012
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