Geofluids

Coupled Mechanical and Hydraulic Properties of Fracture Networks


Publishing date
01 Sep 2021
Status
Published
Submission deadline
16 Apr 2021

Lead Editor

1China University of Mining and Technology, Beijing, China

2Wuhan University, Wuhan, China

3University of Western Australia, Perth, Australia


Coupled Mechanical and Hydraulic Properties of Fracture Networks

Description

Fractures such as joints, faults, veins, and bedding planes are ubiquitous in crustal rocks. These naturally-occurring discontinuities often comprise complex networks and dominate the geomechanical and hydrological behaviour of subsurface rocks.

Fractured rocks may deform in response to high seepage pressure, resulting in failure of surrounding rock and water inrush in underground excavations. For example, recently, two large water inrush disasters occur in the Longtan tunnel program in China induced by the tunnel passing through a water-rich fractured rock zone. The heterogeneous stress distribution may lead to variable local normal/shear stresses loaded on different fractures having distinct sizes and orientations and produce various fracture responses such as opening, closing, and sliding. Since the conductivity of fractures is critically dependent on the third power of fracture apertures, the geomechanical conditions can considerably affect the hydrological properties of fractured rocks including fluid pathways, bulk permeability, and mass transport. Hence studies on coupled mechanical and hydraulic properties of fracture networks will promote understanding of seepage failure mechanisms of fractured rocks under complex engineering conditions, such as tunnelling within aquifers, mining engineering, contaminant migration and nuclear waste isolation, geothermal energy extraction, and hydrocarbon exploitation.

This Special Issue aims to present recent advances in studies on coupled mechanical and hydraulic properties of fracture networks. We invite you to submit all relevant original articles and comprehensive reviews on theoretical developments, laboratory testing, field investigations, computational methods, and case studies.

Potential topics include but are not limited to the following:

  • The construction of realistic discrete fracture networks that can represent the natural fracture systems
  • Quantitative fractures evaluation based on fracture network reconstruction using 3D printing, micro-CT scanning, and scanning electron microscope (SEM) techniques
  • Experimental studies on coupled hydro-mechanical process of fracture networks
  • Novel numerical method of coupled hydro-mechanical in fracture network
  • Novel prediction model of water inflow into underground excavations in subsurface fractures
  • Water source prediction techniques and equipment of in subsurface fractures
  • The stability and failure of fracture systems considering coupled hydro-mechanical process

Articles

  • Special Issue
  • - Volume 2021
  • - Article ID 5569525
  • - Research Article

Investigation on Acoustic Emission Kaiser Effect and Frequency Spectrum Characteristics of Rock Joints Subjected to Multilevel Cyclic Shear Loads

Zhiqiang Hou | Changhong Li | ... | Yu Wang
  • Special Issue
  • - Volume 2021
  • - Article ID 5511081
  • - Research Article

Shaped Charge Hydraulic Blasting: An Environmental, Safe, and Economical Method of Directional Roof Cutting

Quan Zhang | Jiong Wang | ... | Zimin Ma
  • Special Issue
  • - Volume 2021
  • - Article ID 6675984
  • - Research Article

Effects of Water Immersion on the Long-Term Bearing Characteristics of Crushed Gangue in Goaf

Ning Jiang | Dawei Yin | ... | Qian Yin
  • Special Issue
  • - Volume 2021
  • - Article ID 5578717
  • - Research Article

Stability Analysis and Reasonable Layout of Floor Drainage Roadway above Confined Water and under Mining Influence

Xiaofei Guo | Yongen Li | ... | Yichang Xu
  • Special Issue
  • - Volume 2021
  • - Article ID 6641419
  • - Research Article

Microstructural Features of Freezing and Thawing-Creep Damages for Concrete Mixed with Fly Ash

Bing Li | Lian-ying Zhang | ... | Pei-tao Qiu
  • Special Issue
  • - Volume 2021
  • - Article ID 6650710
  • - Research Article

Experimental Study of Volumetric Fracturing Properties for Shale under Different Stress States

Hongjian Wang | Jin Li | ... | Wanlin Gong
  • Special Issue
  • - Volume 2021
  • - Article ID 5520351
  • - Research Article

A New Quantitative Method for Risk Assessment of Coal Floor Water Inrush Based on PSR Theory and Extension Cloud Model

Bingyou Jiang | Bo Ren | ... | Yunchun Han
  • Special Issue
  • - Volume 2021
  • - Article ID 5595277
  • - Research Article

Application of GA-BP Neural Network Optimized by Grey Verhulst Model around Settlement Prediction of Foundation Pit

C. Y. Liu | Y. Wang | ... | L. Z. Du
  • Special Issue
  • - Volume 2021
  • - Article ID 6647500
  • - Research Article

Research on the Coal Seam Permeability-Increasing Technology via High-Pressure Water Jet Reaming and Its Application

Xingang Niu | Biming Shi | ... | Yongjiang Zhang
  • Special Issue
  • - Volume 2021
  • - Article ID 6622214
  • - Research Article

Failure Analysis of a Highway Cut Slope with Anti-Slide Piles

Hongjie Chen | Guangcheng Zhang | ... | Wentao Gao
Geofluids
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Acceptance rate24%
Submission to final decision146 days
Acceptance to publication27 days
CiteScore2.300
Journal Citation Indicator0.600
Impact Factor1.7
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