Pretražite po imenu i prezimenu autora, mentora, urednika, prevoditelja

Napredna pretraga

Pregled bibliografske jedinice broj: 959339

Failure mechanisms in heterogeneous poro-plasticity media in applications to FSI problems


Ibrahimbegovic, Adnan; Hadžalić, Emina; Karavelić, Emir; Nikolić, Mijo
Failure mechanisms in heterogeneous poro-plasticity media in applications to FSI problems // 6th European Conference on Computational Mechanics (ECCM 2018) ; 7th European Conference on Computational Fluid Dynamics (ECFD 2018)
Glasgow, Ujedinjeno Kraljevstvo, 2018. str. 1-1 (plenarno, nije recenziran, sažetak, ostalo)


CROSBI ID: 959339 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Failure mechanisms in heterogeneous poro-plasticity media in applications to FSI problems

Autori
Ibrahimbegovic, Adnan ; Hadžalić, Emina ; Karavelić, Emir ; Nikolić, Mijo

Vrsta, podvrsta i kategorija rada
Sažeci sa skupova, sažetak, ostalo

Skup
6th European Conference on Computational Mechanics (ECCM 2018) ; 7th European Conference on Computational Fluid Dynamics (ECFD 2018)

Mjesto i datum
Glasgow, Ujedinjeno Kraljevstvo, 11.06.2018. - 15.06.2018

Vrsta sudjelovanja
Plenarno

Vrsta recenzije
Nije recenziran

Ključne riječi
soil ; discrete beam lattice model ; poro-plasticity ; failure mechanisms ; FSI

Sažetak
It is well known that the sensitivity to failure of cohesive materials, such as soils or concrete, is strongly influenced by material heterogeneities. Furthermore, these materials are porous, and the presence of the pore fluid strongly influences their response to extreme loads with an increase of the risk for final failure. In this paper, we propose the use of a fine scale model that can fully take into account any failure mode of this kind. In particular, the model is constructed by using the discrete beam lattice constructed from Voronoi cells, and the corresponding discrete approximation of the pore pressure is obtained by discretizing the pressure filed by using Delaunay triangularization. The coupling effect between the solid and fluid phase is accounted for at numerical quadrature points. The representation of different failure mechanisms in saturated soil is based on inelastic Timoshenko beam finite elements with enhanced kinematics in axial and transverse direction. The coupling equations for the soil-pore fluid interaction are derived from Terzaghi’s principle of effective stresses, Biot’s porous media theory and Darcy’s law for fluid flow through porous media. The application of the model to soil mechanics is illustrated through several numerical simulations. The proposed predictive model is further extended to deal with acoustic fluid-structure interaction problems in quasi-static setting. For such a quasi-static case, and confined fluid limited to a small motion, we can provide discrete approximation of fluid described by Lagrangian finite element formulation with displacement and pressure degrees of freedom. Given that the structure response is based upon poro-plasticity, the cohesive link beam elements also provide an enhanced kinematics with pore pressure as a nodal degree of freedom. Such a choice for discrete approximation is able to enforce the direct exchange of the pressures at the fluid-structure interface, with no need for special procedure, such as added mass approach. Numerical simulations are used to illustrate the model performance. Here, we are able to model the saturation of the material, and all different phases of the nonlinear response towards fracturing in the saturated structures, where fluid acts both as a source of the saturation and the loading. More details are given in our recent works [1, 2, 3, 4, 5]

Izvorni jezik
Engleski

Znanstvena područja
Građevinarstvo



POVEZANOST RADA


Ustanove:
Fakultet građevinarstva, arhitekture i geodezije, Split

Profili:

Avatar Url Mijo Nikolić (autor)

Poveznice na cjeloviti tekst rada:

Pristup cjelovitom tekstu rada www.eccm-ecfd2018.org

Citiraj ovu publikaciju:

Ibrahimbegovic, Adnan; Hadžalić, Emina; Karavelić, Emir; Nikolić, Mijo
Failure mechanisms in heterogeneous poro-plasticity media in applications to FSI problems // 6th European Conference on Computational Mechanics (ECCM 2018) ; 7th European Conference on Computational Fluid Dynamics (ECFD 2018)
Glasgow, Ujedinjeno Kraljevstvo, 2018. str. 1-1 (plenarno, nije recenziran, sažetak, ostalo)
Ibrahimbegovic, A., Hadžalić, E., Karavelić, E. & Nikolić, M. (2018) Failure mechanisms in heterogeneous poro-plasticity media in applications to FSI problems. U: 6th European Conference on Computational Mechanics (ECCM 2018) ; 7th European Conference on Computational Fluid Dynamics (ECFD 2018).
@article{article, author = {Ibrahimbegovic, Adnan and Had\v{z}ali\'{c}, Emina and Karaveli\'{c}, Emir and Nikoli\'{c}, Mijo}, year = {2018}, pages = {1-1}, keywords = {soil, discrete beam lattice model, poro-plasticity, failure mechanisms, FSI}, title = {Failure mechanisms in heterogeneous poro-plasticity media in applications to FSI problems}, keyword = {soil, discrete beam lattice model, poro-plasticity, failure mechanisms, FSI}, publisherplace = {Glasgow, Ujedinjeno Kraljevstvo} }
@article{article, author = {Ibrahimbegovic, Adnan and Had\v{z}ali\'{c}, Emina and Karaveli\'{c}, Emir and Nikoli\'{c}, Mijo}, year = {2018}, pages = {1-1}, keywords = {soil, discrete beam lattice model, poro-plasticity, failure mechanisms, FSI}, title = {Failure mechanisms in heterogeneous poro-plasticity media in applications to FSI problems}, keyword = {soil, discrete beam lattice model, poro-plasticity, failure mechanisms, FSI}, publisherplace = {Glasgow, Ujedinjeno Kraljevstvo} }




Contrast
Increase Font
Decrease Font
Dyslexic Font