Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
NUMERICAL MODELLING OF THE SOIL BEHAVIOUR BY USING NEWLY DEVELOPED ADVANCED MATERIAL MODEL
This paper describes a theoretical background, implementation and validation of the newly developed Jardine plastic hardening-softening model (JPHS model), which can be used for numerical modelling of the soils behaviour. Although the JPHS model is based on the elasto-plastic theory, like the Mohr-Coulomb model that is widely used in geotechnics, it contains some improvements, which removes the main disadvantages of the MC model. The presented model is coupled with an isotopically hardening and softening law, non-linear elastic stress-strain law, non-associated elasto-plastic material description and a cap yield surface. The validation of the model is done by comparing the numerical results with real measured data from the laboratory tests and by testing of the model on the real project of the tunnel excavation. The 3D numerical analysis is performed and the comparison between the JPHS, Mohr-Coulomb, Modified Cam-Clay, Hardening small strain model and monitoring in-situ data is done.
NUMERICAL MODELLING OF THE SOIL BEHAVIOUR BY USING NEWLY DEVELOPED ADVANCED MATERIAL MODEL
This paper describes a theoretical background, implementation and validation of the newly developed Jardine plastic hardening-softening model (JPHS model), which can be used for numerical modelling of the soils behaviour. Although the JPHS model is based on the elasto-plastic theory, like the Mohr-Coulomb model that is widely used in geotechnics, it contains some improvements, which removes the main disadvantages of the MC model. The presented model is coupled with an isotopically hardening and softening law, non-linear elastic stress-strain law, non-associated elasto-plastic material description and a cap yield surface. The validation of the model is done by comparing the numerical results with real measured data from the laboratory tests and by testing of the model on the real project of the tunnel excavation. The 3D numerical analysis is performed and the comparison between the JPHS, Mohr-Coulomb, Modified Cam-Clay, Hardening small strain model and monitoring in-situ data is done.
NUMERICAL MODELLING OF THE SOIL BEHAVIOUR BY USING NEWLY DEVELOPED ADVANCED MATERIAL MODEL
Veselý, Jan (Autor:in) / Czech Technical University
28.02.2017
doi:10.14311/AP.2017.57.0058
Acta Polytechnica; Vol 57, No 1 (2017); 58-70 ; 1805-2363 ; 1210-2709
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
DDC:
621
Numerical analysis of newly developed Angelina beams
Springer Verlag | 2023
|Protective behaviour of newly developed coatings against metal dusting
British Library Online Contents | 2003
|High-Temperature Properties of Newly Developed Advanced SiC Fibers
British Library Online Contents | 1999
|Simulation and Measurement of Hygrothermal Behaviour of Newly Developed Plasters
Trans Tech Publications | 2016
|A newly developed soil abrasion testing method for tunnelling using shield machines
Online Contents | 2013
|