Triaxial Testing of Soil Element
Posted: Wed Feb 26, 2025 11:46 am
Dear STKO Team,
I am trying to do a triaxial test of a soil element.
Please see images, powerpoint and model to understand better.
I have produced a cube element, with dimensions of 0.1m, in the model attached. on 3 adjacent sides, there is a stress acting perpendicular to the face, which are an axial stress acting down on the top face, and radial stress acting on 2 of the side faces. The axial stress = radial stress = 20kPa. Given that the area of the face is 0.01 meters squared, the face force has a value of 200N. Boundary conditions are applied on the 3 remaining adjacent sides of the cube, by which they are constrained in the direction perpendicular to the face.
An additional downward displacement is applied to the top face of 0.02m (20% strain). This displacement should be applied through a linearly increasing time step, after the initial confining pressures were applied.
The soil is to be modelled using the Drucker-Prager yield criteria.
A) Please would you be able to check that my model attached reflects the above conditions.
B) I would like to produce 3 graphs that explain the soil behaviour.
1. Deviatoric Stress vs Isotopic Stress
2. Deviatoric Stress vs Deviatoric Strain
3. Volumetric Strain vs Deviatoric Stress
- Please could you advise on how I could produce these graphs.
Please See attached Powerpoint and Model.
Many thanks in advance
I am trying to do a triaxial test of a soil element.
Please see images, powerpoint and model to understand better.
I have produced a cube element, with dimensions of 0.1m, in the model attached. on 3 adjacent sides, there is a stress acting perpendicular to the face, which are an axial stress acting down on the top face, and radial stress acting on 2 of the side faces. The axial stress = radial stress = 20kPa. Given that the area of the face is 0.01 meters squared, the face force has a value of 200N. Boundary conditions are applied on the 3 remaining adjacent sides of the cube, by which they are constrained in the direction perpendicular to the face.
An additional downward displacement is applied to the top face of 0.02m (20% strain). This displacement should be applied through a linearly increasing time step, after the initial confining pressures were applied.
The soil is to be modelled using the Drucker-Prager yield criteria.
A) Please would you be able to check that my model attached reflects the above conditions.
B) I would like to produce 3 graphs that explain the soil behaviour.
1. Deviatoric Stress vs Isotopic Stress
2. Deviatoric Stress vs Deviatoric Strain
3. Volumetric Strain vs Deviatoric Stress
- Please could you advise on how I could produce these graphs.
Please See attached Powerpoint and Model.
Many thanks in advance