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The Effects of a Passing Longwall Face on the Roadway, Pillars, and Standing Supports in Northern West VirginiaBy David Gearhart, Peter Zhang, Gabriel Esterhuizen
"Researchers from the National Institute for Safety and Health (NIOSH) installed instruments in the track entry and in the pillars of a northern West Virginia longwall coal mine between two planned pa
Jan 1, 2018
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Implication of Highly Anisotropic Horizontal Stresses on Entry Stability at the West Elk Mine, Somerset, ColoradoBy J. F. T. Agapito
Overcore measurements at the North Fork Valley (NFV) coal mines in western Colorado have shown that horizontal stresses are highly anisotropic. Measurements have been made in four mines at various dep
Jan 1, 2005
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Challenges in German Subsidence Research—Retrospectives and PerspectivesBy Denise Müller, Axel Preusse
"Due to multilateral underground use, mining subsidence is discussed more and more with regard to issues other than mining, such as post-mining topics, storage, or geothermal use. These discussions an
Jan 1, 2018
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A Review of the Geomechanics Aspects of a Double Fatality Coal Burst at Austar Colliery in NSW, Australia in April 2014By Bruce Hebblewhite, Jim Galvin
"A coal burst occurred on 15 April, 2014 at the Austar Coal Mine, located west of Newcastle, NSW, Australia. The burst resulted in fatal injuries to two men working as part of the mining crew at the d
Jan 1, 2016
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Highwall Stability Implications from Longwall Mining at Broadmeadow MineBy Bob Coutts, Matt Martin, Dan Lynch, Dan Payne
"The Broadmeadow punch longwall coal mine in Central Queensland Australia has experienced significant highwall movement associated with the effect of longwall subsidence when the longwalls approach th
Jan 1, 2018
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Highwall Mining in a Multiple-seam, Western United States Setting Design and PerformanceBy Tom Vandergritft
With advances in system design driving higher productivity, safety, and coal recovery, highwall mining is becoming an attractive option for extending reserve life at surface mines. Typically, highwall
Jan 1, 2005
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Mechanisms of Rib Sloughing and Methods of Controlling Thick Bolted RibsBy Shuangsuo Yang
Coal ribs can roughly be divided into three types: (1) roof and floor rocks are similar to ribs, (2) roof and floor rocks are stronger than ribs, and (3) roof and floor rocks are weaker than ribs. Dif
Jan 1, 2005
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Impacts of Longwall Mining on Hydrology, Soil Moisture, and Tree Health in Belmont County, OhioBy David Bartsch
The Ohio Valley Coal Company (Ohio Valley) has operated the Powhatan No. 6 Mine in Belmont County, Ohio since 1972. Ohio University owns a 455-acre research farm over a portion of the Ohio Valley rese
Jan 1, 2005
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Assessment of Ground Conditions Near a Mine Portal Using Ground Penetrating RadarBy Michael Trevits
The NIOSH Lake Lynn Laboratory (LLL) is a unique research facility, located about 50 miles southeast of Pittsburgh, Pennsylvania, that is designed to provide a full-scale mining environment for testin
Jan 1, 2005
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Analysis of Highwall Mining Stability - The Effect of Multiple Seams and Prior Auger Mining on DesignBy D. Newman
The objective of this is paper is to review the current state of knowledge and practice in highwall mining (HWM). HWM has become a standard method in surface mining, commonly used alone or in conjunct
Jan 1, 2005
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Development and Testing of a New Roof PropBy E. Bane Kroeger
In underground coal mining, there is often a need for supplemental support for mine openings. In the past, one of the most common types of supplemental support was wooden posts that were installed aga
Jan 1, 2005
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Rib Access Boom for a Roof BolterBy Joe McQuerrey, William Kendall, Gene Wilson
"Roof bolting is the standard for ground control in underground coal mining. Rib and truss bolting is just as important when conditions are less than desirable. As a manufacturer of roof drills, J.H.
Jan 1, 2010
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Introduction of a Measurement Based Ground Control Management System to a Deep Level Potash MineBy Alexandra Garcia
A measurement-based ground control management system, commonly employed in coal mines, has been successfully implemented in a UK potash mine operating at a depth of over 800 m. This system includes th
Jan 1, 2014
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An Area Calculation of the ARBS Support IntensityBy Ihsan B. Tulu, Keith A. Heasley, Aanand Nandula
"The objective of this paper is to present the development of a software tool that will assist in an area calculation of the Analysis of Roof Bolting Systems (ARBS) support intensity while incorporati
Jan 1, 2018
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A History of Bock Burst Research in the Coeur D'Alene Mining DistrictBy Michael Jenkins
This paper reviews the history of rock burst research in the Coeur d'Alene Mining District of northern Idaho over the last 30 years. Rock bursting is a problem because of a combination of geologi
Jan 1, 1987
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BHP Billiton Underground Ground Control Fatal Risk Control Protocol ? Development and ApplicationBy Dan Payne
Roof falls and other ground control incidents make up a significant portion of fatal accidents in underground mines. BHP Billiton has undergone a review of all fatalities in their operations and divid
Jan 1, 2006
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A Method for Quantitative Void/Fracture Detection and Estimation of Rock Strength for Underground Mine RoofBy Syd Peng
In designing a proper roof support system, one must know the features of roof geology in advance of mining. The drilling parameters obtained during normal roof bolt installation cycle can provide a l
Jan 1, 2005
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Stability Mapping SystemBy Quanxi Wang
This paper presents a new stability mapping system which tightly integrates structural and geologic mapping with geo- mechanical stress analysis for use in support design and mine plan- ning. The stru
Jan 1, 2005
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Experimental and Numerical Methodology Assessment of Load Transfer Capacity of BoltsBy Naj Aziz
n Australia, the common method of laboratory testing of bolt for load transfer capacity determination is by short encapsulation push testing. Some concerns are raised about the validity of the test me
Jan 1, 2005
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Modeling the Arc-effect of a Coal Mine RoofBy André C. Zingano
The domino effect in a violent pillar collapse occurs due to the redistribution of stress in the remaining pillars near the collapse, and this stress transfer occurs in the immediate and main roofs. T
Jan 1, 2005