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Application Of A Polymer-Based Sealing Material To Prevent Roof From WeatheringBy Peter Zhang
The immediate roof at the test site consisted of laminated clay shale that is likely to be susceptible to weathering. With seasonal dry-wet cycles in the mine ventilation air, the roof in the intake
Jan 1, 2009
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A Roof Quality Index For Stone Mines Using Borescope LoggingBy John Ellenberger
The National Institute for Occupational Safety and Health (NIOSH) has collected pillar and span data at 34 stone mines in 10 states to develop pillar and roof span design guidelines for underground st
Jan 1, 2009
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Design And Control Of Working Support In Polish Coal Mines Based On Three-Dimensional Numerical ModelingBy Slawomir Bock
One of the fundamental issues having a great influence on the safety of operations performed in underground mines is the support of workings which should assure their stability in a given geological s
Jan 1, 2009
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In-Situ Tests and Numerical Simulation about the Effect of Annulus Thickness on the Resin Mixture for Fully Grouted Resin BoltBy Andre Zingano
The objective of this paper is to study the effect of annulus thickness on the quality of resin mixture for fully grouted resin bolt. Pullout and mixture tests were made in underground coal mines for
Jan 1, 2008
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Plasticity Characteristics of the Immediate Floor Rocks in the Illinois Basin Coal MinesBy Murali Gadde
The immediate floor bed in the Illinois Basin coal mines is often comprised of weak plastic underclay material. Operational and stability problems were encountered in the past due to the low strength
Jan 1, 2008
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Numerical Simulation of Reinforced Concrete Mine Seal Subjected to Explosion LoadingBy Khaled Morsy
The tragic incidents at Sago and Darby coal mines in 2006 pointed out the need for stronger seals to resist the blast effects of violent gob explosions. Mine Safety and Health Administration (MSHA) ha
Jan 1, 2008
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The In-Situ Pillar Strength and Overburden Stability in U.S. MinesBy Hamid Maleki
Prudent design of coal pillars in any mining system requires an estimation of in-situ pillar strength, overburden lateral load transfer capability, and a failure criterion. Pillar strength is typicall
Jan 1, 2008
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Alleviation of Rock Bursts by Identifying Burst-Prone Mine WorkingsBy S. Paul Singh
Rock burst is one of the most serious mining hazards, adversely affecting the safety, economy and productivity of mines. It is a sudden manifestation of the release of strain energy stored in the rock
Jan 1, 2008
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Coal Pillar Loading Mechanisms and Progress in Pillar DesignBy David Hill
The Australian underground coal mining industry is increasingly operating in an environment that challenges traditional concepts of coal pillar design, against a background of heightened expectations
Jan 1, 2008
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Monitoring of Mining Surface Deformation using Satellite InSAR and Precise GPS TechniquesBy Karsten Zimmermann
Surface deformation monitoring is required all over the mining industry. For example oil and gas companies need this information to support exploration and production activities and to detect impacts
Jan 1, 2008
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Effects of Rock/Coal Interface Property on Coal Pillar StrengthBy Jun Lu
There are many factors affecting the strength of pillar, including width-to-height (W/H) ratio, mechanical properties of coal and surrounding rocks, property of partings in the coal, and the interface
Jan 1, 2008
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Coal Mine Bumps: Case Histories of Analysis and AvoidanceBy David Newman
In Eastern Kentucky, the Darby seam has had an extensive history of coal bumps and pillar bursts. The combination of high overburden, strong rock and coal, subjacent and superjacent mines, and retrea
Jan 1, 2008
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Footwall Stability and Final Pit Design in the PT. Adaro Coal Mine, IndonesiaBy Takashi Sasaoka
The PT. Adaro Coal Mine targeted in this research is located in South Kalimantan, Indonesia. The coal production of this mine is increasing year, with about 35 M tons of coal produced in 2006. Th
Jan 1, 2008
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Rockburst Prevention in the German Coal IndustryBy Rudiger Baltz
The sudden failure of bodies of rock is a serious problem commonly experienced in the international mining industry. These explosive releases of energy are referred-to as ?bumps?, ?outbursts? and ?roc
Jan 1, 2008
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Seismic Tomography, an Ideal but Immature Tool for Coal Bump PredictionBy Erik Westman
Coal bumps remain one of the industry?s most devastating but least understood phenomena. If changes to the internal conditions of the rock mass could be observed there is hope that bumps could be fo
Jan 1, 2008
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Analysis of Cutting Bits and Cutting Drum Affecting Ground Control in Coal MinesBy A. Wahab Khair
Coal mining has evolved into extensive use of continuous mining machines for development and production. This has resulted in an increase in dependence on the versatile continuous miners. The present-
Jan 1, 2008
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Comparison of the Mark-Bieniawski and Wilson Pillar Equations Using Site Specific DataBy Vincent Scovazzo
This paper compares the two most common pillar design equations used worldwide by John T. Boyd Company; the Mark-Bieniawski Equation, an empirical approach, and the Wilson Equation, an analytical appr
Jan 1, 2008
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Global Trends in Coal Mine Horizontal Stress MeasurementsBy Christopher Mark
Knowledge of in situ stresses is fundamental to many studies in earth sciences, and coal mine ground control is no exception. During the past 20 years, it has become clear that horizontal stress is
Jan 1, 2008
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Pillar Strength and Design Methodology for Stone MinesBy Gabriel Esterhuizen
Underground stone mines in the United States make use of the room-and-pillar method of mining. A prerequisite for a safe working environment is that the pillars should adequately support the overburd
Jan 1, 2008
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Coal-Mining-Induced Seismicity in Utah?Improving Spatial Resolution Using Double-Difference RelocationsBy Kristineq Pankow
The August 2007 Crandall Canyon mine disaster raised national awareness of mining-induced seismicity (MIS) in Utah as well as general interest in how seismic monitoring might improve mine safety in th
Jan 1, 2008