A novel hydraulic fractures growth formulation

10/30/2020
by   Francesca Fantoni, et al.
0

Propagation of a fluid-driven crack in an impermeable linear elastic medium under axis-symmetric conditions is investigated in the present work. The fluid exerting the pressure inside the crack is an incompressible Newtonian one and its front is allowed to lag behind the propagating fracture tip. The tip cavity is considered as filled by fluid vapors under constant pressure having a negligible value with respect to the far field confining stress. A novel algorithm is here presented, which is capable of tracking the evolution of both the fluid and the fracture fronts. Particularly, the fracture tracking is grounded on a recent viscous regularization of the quasi-static crack propagation problem as a standard dissipative system. It allows a simple and effective approximation of the fracture front velocity by imposing Griffith's criterion at every propagation step. Furthermore, for each new fracture configuration, a non linear system of integro-differential equations has to be solved. It arises from the non local elastic relationship existing between the crack opening and the fluid pressure, together with the non linear lubrication equation governing the flow of the fluid inside the fracture.

READ FULL TEXT
research
07/20/2023

Hybrid FEM and peridynamic simulation of hydraulic fracture propagation in saturated porous media

This paper presents a hybrid modeling approach for simulating hydraulic ...
research
11/05/2020

The Darcy problem with porosity depending exponentially on the pressure

We consider the flow of a viscous incompressible fluid through a porous ...
research
02/26/2019

Dynamics of fracturing saturated porous media and self-organization of rupture

Analytical solutions and a vast majority of numerical ones for fracture ...
research
11/23/2021

The unstable temporal development of axi-symmetric jets of incompressible fluid

We study the shear-driven instability, of Kelvin-Helmholtz type, that fo...
research
07/11/2023

Phase-field modeling of fluid-driven dynamic cracking in porous media

A phase field model for fluid-driven dynamic crack propagation in poroel...
research
05/05/2020

Study of human phonation in a full body domain

The Generation and propagation of the human voice is studied in two-dime...
research
10/07/2019

SPH modelling of hydrodynamic lubrication: laminar fluid flow-structure interaction with no-slip conditions for slider bearings

The FOSS CFD-SPH code SPHERA v.9.0.0 (RSE SpA) is empowered to deal with...

Please sign up or login with your details

Forgot password? Click here to reset