C Conferentia Proceedings
SBMR-05-0013 Modelagem Computacional em Mecânica das Rochas

Numerical modeling of hydraulic fracturing process in a heterogeneous medium through a coupling scheme between the cohesive fracture and the Lattice-Boltzmann models

Luis Arnaldo Mejía Camones1; Eurípedes do Amaral Vargas Jr.1; Raquel Quadros Velloso1; Gláucio H. Paulino2

1 Pontifical Catholic University of Rio de Janeiro; 2 Georgia Tech

doi:10.20906/CPS/SBMR-05-0013

Resumo

This research discusses the hydraulic fracturing process in a heterogeneous medium. To model this process, the PPR- potential-based cohesive zone model [1,2] was implemented in the finite element method (FEM) to model the crack propagation; and the lattice-Bolztmann model (LBM) was used to represent the fluid injected into the fracture. These models are coupled in an iterative process [3,4]. In the FEM, the crack's boundary is represented by the faces of cohesive elements. The position and velocity of these faces are transferred to the LBM as a boundary condition, where the forces applied on these boundaries, caused by the fluid injected, can be calculated. These forces are transferred to the FEM as external force applied on the element's faces, where the new position and velocity of the boundary of the crack is computed. These values are transferred to the LBM, initializing a new calculation cycle. The utilization of cohesive elements allows introducing different energy and strength fracture values in each element. Thus, the crack propagation in a heterogeneous medium can be modeled. This research shows the results of the crack propagation in homogeneous and heterogeneous medium, comparing their propagations path. (repeat) This research discusses the hydraulic fracturing process in a heterogeneous medium. To model this process, the PPR- potential-based cohesive zone model [1,2] was implemented in the finite element method (FEM) to model the crack propagation; and the lattice-Bolztmann model (LBM) was used to represent the fluid injected into the fracture. These models are coupled in an iterative process [3,4]. In the FEM, the crack's boundary is represented by the faces of cohesive elements. The position and velocity of these faces are transferred to the LBM as a boundary condition, where the forces applied on these boundaries, caused by the fluid injected, can be calculated. These forces are transferred to the FEM as external force applied on the element's faces, where the new position and velocity of th

Palavras-chave: Hydraulic fracturing; Cohesive fracture model; PPR model; Lattice-Boltzmann

Como citar

Luis Arnaldo Mejía Camones; Eurípedes do Amaral Vargas Jr.; Raquel Quadros Velloso; Gláucio H. Paulino. “Numerical modeling of hydraulic fracturing process in a heterogeneous medium through a coupling scheme between the cohesive fracture and the Lattice-Boltzmann models”. VII Simpósio Brasileiro de Mecânica das Rochas. SBMR2016. 2016. DOI: 10.20906/CPS/SBMR-05-0013