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Controlling Subsidence Effects Using Partial BackfillingBy Yingzin Zhou
Partial backfilling can be used to reduce and control surface subsidence damage caused by longwall mining or pillaring operations in room-and-pillar mines. The use of partial backfill as opposed to to
Jan 1, 1990
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Engineering Classification of Ultra-close Multiple Seam Roofs in Datong Mining District of ChinaBy Yingda Zhai
The range of interburden thickness between coal seams in Datong Mining District of China is large. From mining operation point of view, the closer is between the two seams, the greater is the impact f
Jan 1, 2005
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Numerical Simulation on Microseismicity Due to Mining at One of the Collieries in AustraliaNumerical simulation for microseismicity due to mining at one of the collieries in Australia was carried out and the results were compared to the observed microscismicity. 3-D Stress analysis showe
Jan 1, 2001
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Study of Ground Movement Over a Longwall MineBy A. W. Khair
This paper presents an analysis of ground movements recorded from longwall operations in the Northern Appalachian region in West Virginia. The site chosen for the investigation was selected due to var
Jan 1, 1987
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Longwall Ground Behavior Characteristics In The Illinois Coal Basin - A Field StudyBy Zhanjing Yu
Longwall ground behavior in the Illinois Coal Basin was studied in the past (1, 2, 3). Most of the past studies, however, were concentrated on either surface subsidence or underground structural behav
Jan 1, 1994
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Stress Control Method Applied to Stabilization of Underground Coal Mine Openings (e5cbe8ad-30a8-4144-a7b5-db19e81a247a)By Shosei Serata
Serious floor heave of up to 2.4 m in a 2.4-m high mine entry was eliminated by applying the stress control method of mining, as a last resort, at the No. 5 coal mine of Jim Walter Resources, Inc., in
Jan 1, 1984
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Mining Under Rivers In Fuxin Coal MinesBy Liang Yin-Huai
In Fuxin Coal Mines, there are more than 20 million tons of coal buried under seasonal streams. The coal seams are mostly shallow. We have mined more then 50 mining blocks distributed in 5 coal mines.
Jan 1, 1990
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Analysis Of Retreat Mining Pillar StabilityBy Christopher Mark
Preventing pillar line squeezes, massive pillar collapses, and coal pillar bumps is critical to the safe and efficient recovery of coal during retreat mining operations. To help prevent these problems
Jan 1, 1995
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Geomechanical Criteria of Longwall Face Support Selection at Consol MinesBy D. W. H. Su
This paper describes geomechanical criteria employed by Consol Energy for selecting mine-specific longwall face supports in the past decade. The criteria include immediate and main roof rock character
Jan 1, 2004
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A Method for the Selection of Rock Support Based on Bolt Loading MeasurementsBy Stephen P. Signer
A method to assist in the evaluation and selection of roof bolts using in situ measurements of roof bolt loading has been developed by researchers of the Spokane Research Center, National Institute of
Jan 1, 1997
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Design Aspects In Multiple-Seam Mining: Case StudiesBy Gregory J. Chekan
Developing a coal seam that has been influenced by previous mining in seams either above or below can result in severe ground control problems. In many instances, interactions between operations are i
Jan 1, 1990
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Intersection Stability and Tensioned BoltingBy Yunqing Zhang
Roof failure occurs much more frequently at intersections than entries and crosscuts. Using a commercial finite element package, four-way and three-way intersections reinforced with the tensioned bolt
Jan 1, 2003
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The Effect Of Hazardous Geologic Structures On Gateroad StabilityBy Frank E. Chase
Geologic structures have been responsible for numerous underground accidents and fatalities, and are a constant-source of down time. During - longwall mining, ground control problems associated with g
Jan 1, 1990
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Resupporting High Roof FallsBy Nicholas Chlumecky
One of the most dangerous jobs in mining is that of resupporting the roof after a fall has occurred. The resulting cavity may be more than 30 feet high, with relatively unstable sides and roof. It is
Jan 1, 1981
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A Case History of Computer-Aided Lineament Analysis for Ground Control PlanningBy C. D. Peters
The Bureau of Mines has been researching remote sensing analysis of an underground coal mining area in Utah and computer-aided methods of defining ground control hazards in this mining area. As a resu
Jan 1, 1986
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Development and Application of Impact-Resistant Lagging for Steel Sets Installed at Underground Roof Fall AreasBy Kevin Jinrong Ma
Underground mines often experience roof falls in entries, crosscuts, and intersections of active mining sections, main travel ways, and belt entries. Roof fall heights greater than 20 ft (6 m) make re
Jan 1, 2011
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Evaluating Techniques for Monitoring Rock Falls and Slope Stability (03558dcc-00ee-4336-8044-b80294644df0)By Edward McHugh
While less than 1% of reported accidents are associated with slope stability problems. slope failures were responsible for about 15% of all U.S. surface mine fatalities between 1995 and 2001. Small ro
Jan 1, 2002
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Aerostatic Support System For Underground Coal MinesBy R. J. Morrell
The Bureau of Mines developed a ground support system for use with an underground coal auger. The system consists of inflatable airbags that are inserted in the holes as they are drilled, and then gra
Jan 1, 1988
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The Influence Of Stream Valleys On Coal Mine Ground ControlBy John L. Hill
Over 50 mines of the Appalachian and Illinois Basins are presently experiencing poor ground conditions believed to be caused by overlying stream valleys. The Bureau of Mines is conducting research int
Jan 1, 1988
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Mining Method For Extracting An Eight Metre Coal Horizon Containing A Sandstone LayerBy Freddie Hunter
An underground mining method for extracting an eight metre (26') coal horizon, containing a sandstone layer. A decrease in the thickness of the rock strata between the number two and number th
Jan 1, 2003