A review of discrete modeling techniques for fracturing processes in discontinuous rock masses
Обзор методов дискретного моделирования процессов разрушения в трещиноватых скальных массивах
2014-03-18
SCID: 54.1/rgwj5whv
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discontinuous rock massesdiscrete element methodsfracture nucleation and propagationhybrid finite–discrete element methodsrock fracture modeling
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Abstract (AI)
The goal of this review paper is to provide a summary of selected discrete element and hybrid finite–discrete element modeling techniques that have emerged in the field of rock mechanics as simulation tools for fracturing processes in rocks and rock masses. The fundamental principles of each computer code are illustrated with particular emphasis on the approach specifically adopted to simulate fracture nucleation and propagation and to account for the presence of rock mass discontinuities. This description is accompanied by a brief review of application studies focusing on laboratory-scale models of rock failure processes and on the simulation of damage development around underground excavations.
Key Findings
1
Applications cover laboratory-scale rock failure and damage development around underground excavations.
2
It compares how different computational codes model fracture nucleation and propagation in fractured rock.
3
The review emphasizes fundamental modeling principles alongside representative applications in rock mechanics.
4
The review summarizes discrete element and hybrid finite–discrete element techniques for simulating fracturing in discontinuous rock masses.
5
The reviewed methods explicitly account for pre-existing rock-mass discontinuities in fracture-process simulations.
Research Object
fracturing processes in discontinuous rock masses
Research Subject
discrete element and hybrid finite–discrete element modeling of fracture nucleation, propagation, and damage development around underground excavations
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2014-03-18
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