Přístupnostní navigace
E-application
Search Search Close
Publication detail
KRÁL, P. HRADIL, P. HUŠEK, M. HOKEŠ, F.
Original Title
Comparison of Responses of Concrete Damage Material Models with Respect to Optimization-Based Material Parameter Identification
Type
conference paper
Language
English
Original Abstract
Today, the inverse identification or optimization of material model parameters is very often used to find input parameter values for use in relevant nonlinear material models. These parameter values should enable the responses of structures obtained from numerical simulations to very closely approximate the real responses of such structures obtained from experiments. Due to the popularity of concrete as a construction material, much attention is paid to nonlinear material models that aim to describe its behavior. This paper is focused on the optimization-based inverse identification of the parameters of two related nonlinear concrete material models which are known as the Karagozian & Case Concrete model and the Karagozian & Case Concrete model - Release III. Within this paper, the identification of the material model parameters is performed on the basis of interaction between nonlinear numerical simulations, optimization algorithms and experimental data, the latter of which take the form of a loading curve measured during a triaxial compression test. A comparison of the responses of both of the used material models when the optimized parameters are employed is, of course, part of this paper
Keywords
Concrete damage models; Sensitivity; Evolutionary algorithm; Concrete cylinder; Loading curve
Authors
KRÁL, P.; HRADIL, P.; HUŠEK, M.; HOKEŠ, F.
Released
21. 7. 2017
ISBN
978-0-7354-1538-6
Book
AIP Conference Proceedings
1551-7616
Periodical
Year of study
2017
Number
1863
State
United States of America
Pages from
1
Pages to
4
Pages count
URL
http://doi.org/10.1063/1.4992644
BibTex
@inproceedings{BUT146033, author="Petr {Král} and Petr {Hradil} and Martin {Hušek} and Filip {Hokeš}", title="Comparison of Responses of Concrete Damage Material Models with Respect to Optimization-Based Material Parameter Identification", booktitle="AIP Conference Proceedings", year="2017", journal="AIP Conference Proceedings", volume="2017", number="1863", pages="1--4", doi="10.1063/1.4992644", isbn="978-0-7354-1538-6", issn="1551-7616", url="http://doi.org/10.1063/1.4992644" }