Discrete Element Modeling of Rock Deformation, Fracture Network Development and Permeability Evolution Under Hydraulic Stimulation

Discrete Element Modeling of Rock Deformation, Fracture Network Development and Permeability Evolution Under Hydraulic Stimulation
Author :
Publisher :
Total Pages :
Release :
ISBN-13 : OCLC:873646158
ISBN-10 :
Rating : 4/5 ( Downloads)

Book Synopsis Discrete Element Modeling of Rock Deformation, Fracture Network Development and Permeability Evolution Under Hydraulic Stimulation by :

Download or read book Discrete Element Modeling of Rock Deformation, Fracture Network Development and Permeability Evolution Under Hydraulic Stimulation written by and published by . This book was released on 2011 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Key challenges associated with the EGS reservoir development include the ability to reliably predict hydraulic fracturing and the deformation of natural fractures as well as estimating permeability evolution of the fracture network with time. We have developed a physics-based rock deformation and fracture propagation simulator by coupling a discrete element model (DEM) for fracturing with a network flow model. In DEM model, solid rock is represented by a network of discrete elements (often referred as particles) connected by various types of mechanical bonds such as springs, elastic beams or bonds that have more complex properties (such as stress-dependent elastic constants). Fracturing is represented explicitly as broken bonds (microcracks), which form and coalesce into macroscopic fractures when external and internal load is applied. The natural fractures are represented by a series of connected line segments. Mechanical bonds that intersect with such line segments are removed from the DEM model. A network flow model using conjugate lattice to the DEM network is developed and coupled with the DEM. The fluid pressure gradient exerts forces on individual elements of the DEM network, which therefore deforms the mechanical bonds and breaks them if the deformation reaches a prescribed threshold value. Such deformation/fracturing in turn changes the permeability of the flow network, which again changes the evolution of fluid pressure, intimately coupling the two processes. The intimate coupling between fracturing/deformation of fracture networks and fluid flow makes the meso-scale DEM- network flow simulations necessary in order to accurately evaluate the permeability evolution, as these methods have substantial advantages over conventional continuum mechanical models of elastic rock deformation. The challenges that must be overcome to simulate EGS reservoir stimulation, preliminary results, progress to date and near future research directions and opportunities will be discussed. Methodology for coupling the DEM model with continuum flow and heat transport models will also be discussed.


Discrete Element Modeling of Rock Deformation, Fracture Network Development and Permeability Evolution Under Hydraulic Stimulation Related Books

Discrete Element Modeling of Rock Deformation, Fracture Network Development and Permeability Evolution Under Hydraulic Stimulation
Language: en
Pages:
Authors:
Categories:
Type: BOOK - Published: 2011 - Publisher:

DOWNLOAD EBOOK

Key challenges associated with the EGS reservoir development include the ability to reliably predict hydraulic fracturing and the deformation of natural fractur
Discrete Fracture Network Modeling of Hydraulic Stimulation
Language: en
Pages: 96
Authors: Mark W. McClure
Categories: Technology & Engineering
Type: BOOK - Published: 2013-06-15 - Publisher: Springer Science & Business Media

DOWNLOAD EBOOK

Discrete Fracture Network Modeling of Hydraulic Stimulation describes the development and testing of a model that couples fluid-flow, deformation, friction weak
Fundamentals of Discrete Element Methods for Rock Engineering: Theory and Applications
Language: en
Pages: 563
Authors: Lanru Jing
Categories: Science
Type: BOOK - Published: 2007-07-18 - Publisher: Elsevier

DOWNLOAD EBOOK

This book presents some fundamental concepts behind the basic theories and tools of discrete element methods (DEM), its historical development, and its wide sco
Modelling Rock Fracturing Processes
Language: en
Pages: 573
Authors: Baotang Shen
Categories: Science
Type: BOOK - Published: 2020-04-07 - Publisher: Springer

DOWNLOAD EBOOK

This book is the second edition of the well-known textbook Modelling Rock Fracturing Processes. The new and extended edition provides the theoretical background
Adaptive Analysis of Damage and Fracture in Rock with Multiphysical Fields Coupling
Language: en
Pages: 204
Authors: Yongliang Wang
Categories: Science
Type: BOOK - Published: 2020-08-31 - Publisher: Springer Nature

DOWNLOAD EBOOK

This book mainly focuses on the adaptive analysis of damage and fracture in rock, taking into account multiphysical fields coupling (thermal, hydro, mechanical,