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The Broken Rock Zone Around Tunnels And Its Support TheoryBy Fangting Dong
The broken rock zone (BRZ) and the tunnel support theory are investigated. The relationship between the BRZ and the related factors, the interaction between the BRZ and supports, and the function of s
Jan 1, 1988
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Shear Mechanism for Mining-Induced Fractures Applied to Rock Mechanics of Coal Mines (26fab274-0576-48ca-b03a-d4a9f18550cb)By Brian White
Two examples of en echelon mining-induced fractures seen in hard¬rock mines provided a basis for inferring that fracture zones and bedding plane separations immediately surrounding mine openings are p
Jan 1, 2002
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Application Of DDM To Some Rock Pressure Problems In Japanese Deep Coal MinesBy Yoshiaki Fujii
Displacement Discontinuity Method (DDM), which was originally developed by Crouch,S.L., is a powerful tool to calculate mechanical disturbances due to tabular excavations. Three topics on DDM applicat
Jan 1, 1992
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Ground Control Design For Multiple Seam Mining Using Finite Element AnalysisBy John Stankus
Seam interaction in multiple seam mining has significant effect on entry stability. The remaining pillar in an old working usually creates a high stress concentration zone while the gob creates a stre
Jan 1, 1999
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The Stress And Failure Paths Followed By Coal Mine Roofs During Longwall Extraction And Implications To Tailgate SupportBy Ross Seedsman
Discussion on the design of roof support in tailgates has often been conducted without a clear statement of the stress and failure conditions acting. There is general agreement that in the tailgate th
Jan 1, 2001
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Evaluation Of Support Performance In A Highly Stressed MineBy Hamid Maleki
The U.S. Bureau of Mines implemented a monitoring program in a western U.S. coal mine for the evaluation of both conventional and alternative support systems. The conventional support consisted of 2.5
Jan 1, 1994
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Investigations Of Underground Coal Mine BurstsBy K. Haramy
Coal mine bursts or bumps involve the violent, rapid failure of coal and rock in or around a mine excavation. Failure is normally associated with high stress and brittle or brittle-elastic materials;
Jan 1, 1984
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Support Selection For The Multi-Lift Mining MethodBy Claude A. Goode
Large quantities of high grade coal exist in thick seams in the United States. Many of these thick seams are too deep to be surface mined and do not lend themselves readily to underground extraction.
Jan 1, 1981
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Analysis of a Stability Problem in an Underground Coal Mine Due to Floor ConditionsBy M Nombe
Based on the analysis of a case study at POWELTON No.2 MINE, it was determined that mine stability problems had occurred due to floor softening. A fireclay (underclay) layer in the immediate floor was
Jan 1, 2002
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Load Deformation Behavior Of Simulated Longwall Gob MaterialBy Deno M. Pappas
The purpose of this U.S. Bureau of Mines study was to determine the material stiffness properties of the gob for use in numerical models of rock mass response to longwall mining. Photographs of actual
Jan 1, 1993
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Longwall Mining-Induced Abutment Loads and Their Impacts on Pillar and Entry StabilityBy Jinsheng Chen
Longwall mining-induced abutment loads on the surrounding coal pillars can be grouped into two categories in terms of the relative position of the coal pillars and the longwall face. They are the fron
Jan 1, 2002
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Rock Mass Classification As An Aid To Estimating The Strength Of Coal Pillars (77026f3a-8230-4eb0-afbc-609f7a2ad471)Coal mass strength properties must be estimated to obtain realistic estimates of coal pillar strength. The limitations of existing techniques for approximating these properties are discussed. The coal
Jan 1, 1992
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Downhole Overcoring Stress Measurement at a Western Underground Coal MineBy David Conover
Knowledge of the magnitude and direction of the horizontal secondary principal stresses is a critical factor in designing the layout and mining sequence of underground openings. Typically, horizontal
Jan 1, 2004
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RQD from the Barrel to the Box: Weatherability May be a Better indicator for Roof Support DesignBy Kot Unrug
For the purposes of underground mine design, twelve cores of the Springfield (V) Coal (Pennsylvanian) roof and floor were retrieved. Each core was photographed, described fresh in the barrel, and the
Jan 1, 2003
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Failure Modes Of Mine Tunnels In Stratified Rock Structures With Reference To Stress Field ConditionsBy Hui Chen
The paper describes the use of a physical model technique to investigate the failure modes of mine tunnels with reference to the in situ stress field. The characteristics of stratification commonly en
Jan 1, 1993
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Roof Screening: Best Practices and Roof Bolting Machines (e5909744-6953-4a41-b02f-21226966b63f)By Susan Robertson
Many injuries are caused each year by rock falls in coal mines. Most of these injuries are not caused by major roof collapses, but from falls of smaller rocks from the immediate top or roof skin. Vari
Jan 1, 2002
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Comparison of Closure Measurements with Finite Element Model Results in an Underground Coal Mine in Central UtahBy Jessica M. Wempen, William G. Pariseau, Michael K. McCarter
"Quantitative analysis of mine-wide subsidence at the kilometer scale and details of stress distribution about an advancing longwall face are estimated using an adaptation of the finite element method
Jan 1, 2018
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Effect of In Situ Stresses on the Stability of Coal Mine Development WorkingsBy Murali Gadde
Among different types of ground control problems associated with underground coal mining, those related to in situ stresses are the most common ones affecting the safety and economy of a mining operat
Jan 1, 2004
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Ground Control Criteria for Coal Reserve Optimization in Multiple-Seam MinesBy Eric Westman
Ground control problems caused by multiple-seam interaction frequently sterilize coal reserves. Interaction mechanisms differ for overmining and undermining and are controlled by mining, spatial. and
Jan 1, 1997
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Continuous Monitoring Of Mechanised Breaker Line Supports To Investigate Roof And Pillar BehaviourBy I. L. Follington
A breaker line support (BLS) monitoring system, BLSmon, has been designed and constructed by the CSIRO and installed and commissioned at Laleham No.1 Colliery, Queensland. This system was designed to
Jan 1, 1992