Advances in Civil Engineering

Deep Rock Behaviour in Engineering Environments


Publishing date
01 Jan 2021
Status
Published
Submission deadline
14 Aug 2020

Lead Editor

1Southeast University, Nanjing, China

2China University of Mining & Technology, Beijing, China

3Curtin University, Perth, Australia

4Nagasaki University, Nagaski, Japan


Deep Rock Behaviour in Engineering Environments

Description

With the global growth in population and subsequent growth in industrial activities, projects are shifted to an increasingly underground depth. In engineering fields, such as transportation, oil and gas extraction /storage, and mining activities, there has been a growing number of projects occurring in deep rock formations. Deep rocks are under high in situ stresses, and excavation, tunnelling, and drilling all result in unloading external disturbance during and after construction. Abnormal failures of surrounding rocks (cracking, rock burst, spalling, slabbing) are frequently being reported in deep rock engineering structures and could potentially be disastrous for the safety of underground equipment and working staff. The mechanisms of such rock instabilities are worthy of investigation.

There is increasing interest in investigating the characteristics and mechanisms of deep rock failure by means of experiments and numerical simulations. In addition, the energy storage, consumption, and distribution phenomena always exist in rock fracturing progression. Rock fracturing can be essentially regarded as a progressive failure process driven by energy. Thus, more and more researchers are paying attention to the energy evolution behaviours in rock destruction and deformation, and a more comprehensive and in-depth understanding of rock failure. Hence, it is important to better characterize various types of rocks under simulated in situ stress conditions.

This Special Issue will be focused on publishing original research articles and reviews on the latest findings concerning the mechanical characteristics of rocks under various construction and storage environments. Among the topics to be highlighted are the mechanical properties and fracture behaviour.

Potential topics include but are not limited to the following:

  • Mechanical properties and fracture behaviour of deep rock
  • Rock failure behaviour under multi field coupling and multi-scale systems
  • Dynamic failure characteristics and constitutive properties of deep rock
  • Mechanical behaviours of rock fractures during shearing
  • Energy evolution characteristics during rock fracturing
  • Experimental or numerical simulation of rockbursts
  • Failure mechanism of spalling in deep tunnels
  • Rock and structure response under blast and impulsive loading
  • Prevention and control of disasters in deep rock engineering

Articles

  • Special Issue
  • - Volume 2020
  • - Article ID 8876661
  • - Research Article

Discrete Element Modeling of Crack Initiation Stress of Marble Based on Griffith’s Strength Theory

Suifeng Wang | Fei Tan | ... | Fubin Tu
  • Special Issue
  • - Volume 2020
  • - Article ID 8891248
  • - Research Article

An Extension Failure Criterion for Brittle Rock

Aizhong Lu | Ning Zhang | Guisen Zeng
  • Special Issue
  • - Volume 2020
  • - Article ID 8875029
  • - Research Article

Study of Damage Constitutive Model of Brittle Rocks considering Stress Dropping Characteristics

Fei Li | Shuang You | ... | Hao Wang
  • Special Issue
  • - Volume 2020
  • - Article ID 8837289
  • - Research Article

Failure Behavior and Energy Storage and Release of Hard Coal under Different Static and Dynamic Loading States

XianJie Hao | GuangYao Pan | ... | Zeyu Chen
  • Special Issue
  • - Volume 2020
  • - Article ID 8837865
  • - Research Article

Dynamic Tensile Test of Granite and Its Tensile Sensitivity

Ke Man | Zhifei Song | Xiaoli Liu
  • Special Issue
  • - Volume 2020
  • - Article ID 8858363
  • - Research Article

Triaxial Strength Criteria in Mohr Stress Space for Intact Rocks

Baohua Guo | Long Wang | ... | Yan Chen
  • Special Issue
  • - Volume 2020
  • - Article ID 8821343
  • - Research Article

Experimental Investigation of the Liquefaction Properties and Post-Liquefaction Volumetric Strain of Calcareous Sand in Dredger Fill Site

Shenghua Zhao | Yanlin Zhao | ... | Lei Wang
  • Special Issue
  • - Volume 2020
  • - Article ID 8892091
  • - Research Article

Mechanical Model of Underground Shaft Coal Pocket and Deformation of Silo Wall in Coal Mines

Yongping Wu | Mingyin Liu | ... | Bosheng Hu
  • Special Issue
  • - Volume 2020
  • - Article ID 8841796
  • - Research Article

Effect of Material Properties and Strain Rate on Fragmentation of Anisotropic Rock

R. J. Wu | H. B. Li
  • Special Issue
  • - Volume 2020
  • - Article ID 8843466
  • - Research Article

Key Factors Affecting the Deformation and Failure of Surrounding Rock Masses in Large-Scale Underground Powerhouses

Meng Wang | Jia-wen Zhou | ... | Hai-bo Li
Advances in Civil Engineering
 Journal metrics
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Acceptance rate20%
Submission to final decision113 days
Acceptance to publication22 days
CiteScore3.400
Journal Citation Indicator0.370
Impact Factor1.8
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