Hydraulic%20Fractures:%20multiscale%20phenomena,%20asymptotic%20and%20numerical%20solutions - PowerPoint PPT Presentation

About This Presentation
Title:

Hydraulic%20Fractures:%20multiscale%20phenomena,%20asymptotic%20and%20numerical%20solutions

Description:

Hydraulic Fractures: multiscale phenomena, asymptotic and numerical solutions – PowerPoint PPT presentation

Number of Views:169
Avg rating:3.0/5.0
Slides: 51
Provided by: murtisa
Category:

less

Transcript and Presenter's Notes

Title: Hydraulic%20Fractures:%20multiscale%20phenomena,%20asymptotic%20and%20numerical%20solutions


1
Hydraulic Fractures multiscale phenomena,
asymptotic and numerical solutions
Anthony Peirce University of British
Columbia Collaborators Emmanuel Detournay
(UMN) Eduard Siebrits (SLB)
SANUM Conference Stellenbosch 6-8 April 2009
2
Outline
  • Examples of hydraulic fractures
  • Governing equations, scaling, asymptotic
    solutions 1-2D and 2-3D
  • Solving the free boundary problem
  • Existing methods VOF, Level Set and KI matching
  • Tip asymptote and Eikonal boundary value problem
  • Setting the tip volumes using the tip asymptotes
  • Coupled equations
  • Numerical examples
  • M-vertex and K-vertex
  • Viscous crack propagating in a variable in situ
    stress
  • Stress jump solutions

3
HF Examples - block caving
4
Oil well stimulation
5
Quarries
6
Magma flow
Tarkastad
7
Model EQ 1 Conservation of mass
8
Model EQ 2 The elasticity equation
9
1-2D model and physical processes
Viscous energy loss
Fracture Energy Breaking rock
Leak-off
10
2-3D HF Equations
  • Elasticity
  • Lubrication
  • Boundary conditions at moving front

(non-locality)
(non-linearity)
(free boundary)
11
Scaling
  • Rescale the physical quantities as follows
  • Dimensionless groups
  • Scaled Equations

12
Reduced eq near a smooth front
13
Tip asymptotic behaviour
  • Elasticity
  • Lubrication

14
HF experiment (Bunger Jeffrey CSIRO)
15
Discretizing the Elasticity Equation
  • Piecewise constant DD
  • Discrete Elasticity Equation
  • Operator form

16
Discretizing the Fluid Flow Equation
  • The fluid flow equation
  • Integrate over cell
  • Approximate the integrals
  • where
  • Operator form

17
How do we find the fracture front?
  • VOF method
  • Level set method
  • -move contours of a surface
  • - differentiate

.75
.15
1
.8
.06
1
1
.3
Problem we need an accurate
18
Why not use stress intensity factor?
  • Move front till SIF
  • Find the SIF numerically
  • if move forward
  • if move back
  • if stay
  • Problems
  • Accurate calculation of
  • How far do you move?
  • What about viscous and leak-off dominated
    propagation regimes

19
Divide elements into tip channel
tip elt
channel elt
At survey points
20
Eikonal solution surfaces
The signed distance function
21
Solving the Eikonal BVP
  • The Eikonal Equation
  • First order discretization
  • Reduction to a quadratic
  • Let
  • Solution to the quadratic equation

22
Geometric interpretation
23
Initializing from tip asymptotes
  • General asymptote
  • K-vertex
  • M-vertex

24
Sample signed distance function
25
Calculating the tip volume
26
Tip volume width as a function of
  • Width of the tip element
  • Volume of the tip element
  • Tip widths

27
Tip widths and Pressures
28
The coupled equations
  • Channel lubrication equation
  • Tip lubrication equation
  • Elasticity Equation (eliminate channel pressure)
  • Coupled system

29
Time stepping and front evolution
Time step loop Front iteration loop Coupled
Solution end set in use FMM
to solve Locate front next front
iteration next time step
30
M-vertex radial soln footprints
31
M-Vertex radial solution front speed
32
M-vertex radial solution -
33
M-Vertex Footprint evolution
ILSA
EXACT
34
M-vertex radial solnwidth pressure
35
M-vertex width
36
M-vertex pressure
37
K-vertex radial soln footprints
38
K-Vertex radial solution front speed
39
K-vertex radial solution -
40
K-vertex convergence rate for
41
K-vertex radial solnwidth pressure
42
K-vertex width
43
K-vertex Pressure
44
Linear in-situ stress field - footprints
45
Zoom in
46
Linear in-situ stress field - movie
ILSA Linear
Uniform field
47
Breakthrough Low to High Stress
48
Stress contrast high-gtlow
49
Lab Test (Bunger et al 2008)
ILSA
Test
50
Conclusions
  • Governing equations, scaling, asymptotic
    solutions 1-2D and 2-3D
  • Solving the free boundary problem
  • Existing methods VOF, Level Set and KI matching
  • Tip asymptote and Eikonal boundary value problem
  • Setting the tip volumes using the tip asymptotes
  • Coupled equations
  • Numerical examples
  • M-vertex and K-vertex
  • Viscous crack propagating in a variable in situ
    stress
  • Stress jump solutions
Write a Comment
User Comments (0)
About PowerShow.com