Javascript must be enabled to continue!
Supporting Design Optimization of Tunnel Boring Machines-Excavated Coal Mine Roadways: A Case Study in Zhangji, China
View through CrossRef
Tunnel Boring Machines (TBMs) are a cutting-edge excavating equipment, but are barely applied in underground coal mines. For TBM excavation projects involving the Zhangji coal mine, the surrounding rock properties, stress field, cross section geometry, as well as the excavation-induced stress path of TBM-excavated coal mine roadways are different from those of traditional tunnels or roadways. Consequently, traditional roadway supporting technologies and experiences cannot be relied on for this project. In order to research an appropriate supporting pattern for a TBM-excavated coal mine roadway, first of all, the constitutive model of roadway surrounding rocks was derived, and a rock failure criterion was proposed based on rock mechanical tests. Secondly, a three-dimension finite element model was established and computer simulations under three different supporting patterns were conducted. Stress redistribution, roadway convergence, and excavation damage zone ranges of surrounding rocks under three different support patterns were analyzed and an optimal support design of the TBM-excavated roadway was made based on simulation results. During roadway excavation, convergence gauge and rock bolt dynamometers were installed for monitoring roadway convergence and the axial forces of rock bolts. The in-situ monitoring results verified the validity of roadway supporting designs.
Title: Supporting Design Optimization of Tunnel Boring Machines-Excavated Coal Mine Roadways: A Case Study in Zhangji, China
Description:
Tunnel Boring Machines (TBMs) are a cutting-edge excavating equipment, but are barely applied in underground coal mines.
For TBM excavation projects involving the Zhangji coal mine, the surrounding rock properties, stress field, cross section geometry, as well as the excavation-induced stress path of TBM-excavated coal mine roadways are different from those of traditional tunnels or roadways.
Consequently, traditional roadway supporting technologies and experiences cannot be relied on for this project.
In order to research an appropriate supporting pattern for a TBM-excavated coal mine roadway, first of all, the constitutive model of roadway surrounding rocks was derived, and a rock failure criterion was proposed based on rock mechanical tests.
Secondly, a three-dimension finite element model was established and computer simulations under three different supporting patterns were conducted.
Stress redistribution, roadway convergence, and excavation damage zone ranges of surrounding rocks under three different support patterns were analyzed and an optimal support design of the TBM-excavated roadway was made based on simulation results.
During roadway excavation, convergence gauge and rock bolt dynamometers were installed for monitoring roadway convergence and the axial forces of rock bolts.
The in-situ monitoring results verified the validity of roadway supporting designs.
Related Results
Research on water immersion damage characteristics and equivalent width of coal pillar
Research on water immersion damage characteristics and equivalent width of coal pillar
Abstract
Affected by weakening effect of water in the goaf, the bearing capacity of coal pillar reduced, and coal pillar rock burst is prone to occur, which is a serious th...
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Abstarct
Introduction
Isolated brain hydatid disease (BHD) is an extremely rare form of echinococcosis. A prompt and timely diagnosis is a crucial step in disease management. This ...
The CO2 storage in coal seams at the influence of coal fines migration
The CO2 storage in coal seams at the influence of coal fines migration
Abstract: the pressure of the coal seam decays to a certain value due to the production of CH4, the production wells are switched to CO2 injection wells. The injection of CO2 can i...
Construction time of secondary lining of ultra-small spacing parallel overlapping tunnel
Construction time of secondary lining of ultra-small spacing parallel overlapping tunnel
Abstract
Due to the unique spatial structure, stress transfer mechanism, and construction disturbance characteristics of ultra-small spacing parallel overlapping tu...
Practical Aspects Of Coal Degasification
Practical Aspects Of Coal Degasification
Abstract
The increase in value of energy resources has generated serious interest in so-called "unconventional energy resource developments", Coal and coal gas re...
Adaption of Theoretical Adsorption Model on Coal: Physical Structure
Adaption of Theoretical Adsorption Model on Coal: Physical Structure
With the motivation to investigate the role of coal physical structure on the adsorption performance of coal reservoir, 18 different types of coal samples with different coal struc...
Comparison of prevalence of symptoms of carpal tunnel syndrome between dental students and dental practitioners - A cross-sectional study
Comparison of prevalence of symptoms of carpal tunnel syndrome between dental students and dental practitioners - A cross-sectional study
Background: carpal tunnel syndrome (CTS) arises from compression of the median nerve when it passes through the carpal tunnel in the wrist. Dental professionals use vibratory instr...

