Modeling of Ground Excavation with the Particle Finite-Element Method
Моделирование выемки грунта методом конечных элементов на основе частиц
2009-09-03
SCID: 54.1/9qvmqgvx
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contact mechanicsground excavationparticle finite-element method (PFEM)soil/rock wear modelsα-shape boundary detection
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Abstract (AI)
An excavation process is a nonlinear dynamic problem that includes geometrical, material, and contact nonlinearities. The simulation of ground excavation has to face contact interaction in a changing geometry composed by several solid domains. The particle finite-element method (PFEM) is based on a Lagrangian description for modeling the motion of a continuum medium. The PFEM is particularly suitable for modeling a fluid motion with free surfaces. The application of the PFEM in ground excavation includes the use of the remeshing process, α -shape concepts for detecting the domain boundary, contact mechanics laws, material constitutive models, and surface wear models. Everything is correctly matched to quantify the excavation and the corresponding damage caused to the ground. The erosion and wear parameters of the soil/rock material govern the evolution of the excavation process. The preliminary results presented in this paper show that the PFEM it is a very suitable tool for the simulation of ground excavation processes.
Key Findings
1
Ground excavation is modeled as a nonlinear dynamic problem involving geometric, material, and contact nonlinearities.
2
Preliminary results indicate that PFEM is well suited for simulating ground excavation processes.
3
Soil and rock erosion and wear parameters govern the progression of the simulated excavation process.
4
The integrated PFEM framework quantifies excavation evolution and the associated damage to the ground across changing geometries and interacting solid domains.
5
The particle finite-element method (PFEM) is adapted for excavation using remeshing, α-shape boundary detection, contact mechanics, constitutive material models, and surface-wear models.
Research Object
ground excavation process involving soil/rock material
Research Subject
nonlinear excavation evolution and damage, governed by soil/rock erosion and wear parameters
Publication Details
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2009-09-03
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