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Application of Highwall Mining System at Surface Coal Mine in ThailandBy Takashi Sasaoka, Pinyo Meechumna, Hiroshi Takamoto, Pipat Laowattanabandit, Akihiro Hamanaka, Kikuo Matsui, Hideki Shimada
"The EGAT Mae Moh coal mine is an open-cut coal mine in Thailand that produces about 16 million tons of lignite annually to generate 2,400 mw of electricity. The surface mine pit covers is 4 by 7 km (
Jan 1, 2010
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Coal Bursts That Occur During Development: A Rock Mechanics EnigmaBy Christopher Mark
Coal bursts are typically associated with highly stressed coal. Most bursts occur during retreat mining (longwall mining or pillar recovery) in highly stressed locations like the tailgate corner of th
Jan 1, 2017
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A Method For Estimating Western Coal Strengths From Point Load Tests On Irregular LumpsBy K. Y. Haramy
This report describes the development of an equation for predicting the crushing strength of 2-inch (5.08-cm) cubes of coal from point load tests made on irregular lumps. The equation was developed fr
Jan 1, 1982
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Ground Control Experiences in a High Horizontal Stress Field at Inland Steel Coal Mine NO. 2,By C. Thomas Blevins
This paper is intended to be a hands on experience account about ground control in a Southern Illinois coal mine. Its aim is to show how a combination of real world mining practices and constraints al
Jan 1, 1984
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Stability Analyses and Remediation of Two Mined?Out Coal Seams Adjacent to a BuildingBy Gennaro G. Marino
As part of the development of a shopping center in West Virginia, a significant bench had to be cut into a mountainside that was over 700 ft. high. As a result, a steeply stepped, over 400-ft.- high w
Jan 1, 2013
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Microseismic Monitoring of Mountain Bumps and Bounces: A Case StudyBy J. L. Condon
The Bureau of Mines, through in-house and contract research, monitored mountain bump-prone areas of the Olga #2 Mine, near Welch, WV, using microseismic techniques for 15 months during 1985 and 1986.
Jan 1, 1987
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Numerical Modeling of the U1A Complex at the Nevada Test Site: Model Development and Comparison of Different Drift Mining Options (9c46cc37-c6f9-43fc-b6b3-b63cc79f203c)By R. Karl Zipf
Stress analysis programs such as MULSIM/NL, LAMODEL, MinSim 2000, and EXAMINE TAB are used in the mining industry to analyze stresses and displacements in coal mines, platinum mines, gold reefs, and t
Jan 1, 2003
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Roof Bolt Bond Tester; A Device For Nondestructive Testing Of Grouted BoltsBy Raymond M. Stateham
The Bureau of Mines has developed a portable, lightweight device for determining the integrity of resin-grouted roof bolts. The instrument functions by sending a known pulse of ulstrasonic energy into
Jan 1, 1982
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Current Trends In Roof Truss HardwareBy C. P. Mangelsdorf
The success of the Birmingham roof truss (Figure 1) in supporting some difficult roof conditions, particularly in the Illinois coal basin, has given impetus to the development of a number of alternate
Jan 1, 1982
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Prediction Of Shearer Cutting Performance (2d8ef98a-f84a-4c60-8ac8-2edff3e8f14f)By D. L. Price
This paper presents a method of measuring field power consumption of shearers and deriving specific energy consumption versus shearer haulage speed performance curves. A description of a computer prog
Jan 1, 1992
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Roklok Polyurethane Binder: A Chemical Injection System For The Consolidation Of Severe In-Mine Ground ConditionsBy Kirk W. McCabe
RokLok binder is a two-component polyurethane system consisting of a polymeric isocyanate (Component A) and a polyol resin (Component B). The two chemicals are mixed and injected into the mine rock un
Jan 1, 1981
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Seismic Events Due To Underground Mining ActivitiesBy R. Fritschen
In order to investigate locations, source parameters, and source mechanisms of mining induced seismic events, a local network of seismic stations was installed at a coal mine in the eastern part of th
Jan 1, 1999
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Change in Primary Roof Support System at Quarto Mining Company's Powhatan No. 4 Mine Results in Improved Safety, Productivity and CostsBy Michael J. Peacock
The Powhatan No. 4 Mine is located in southeastern Ohio along the Ohio River in Monroe County. The mine produces approximately 3.2 million tons of steam coal annually from the Pittsburgh No. 8 seam. T
Jan 1, 1986
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Violent Coal Pillar Collapse -A Case StudyBy André Zingano
Pillar collapses have been studied for several years and can be classified into two types: nonviolent squeeze or violent pillar collapse, i.e., controlled or uncontrolled pillar collapse. Underground
Jan 1, 2004
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Geotechnical Investigation For A Single Entry Design For Longwall MiningBy Madan M. Singh
Currently longwall coal mining operations require at least 3 entries on both the headgate and tailgate ends because of ventilation and safety requirements. Driving of entries, however, is a slow and c
Jan 1, 1982
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Strata Support Interaction On A Powered Support Longwall Face Under A Massive Dolerite Sill - A Study (d30e090b-e4dc-4c93-b107-3cdd31db016b)Design and selection of support systems for longwall faces call for in-depth knowledge of strata mechanics and in particular of strata-support interactions. The paper presents the results of field inv
Jan 1, 1992
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Enhancing Mine Subsidence Prediction and Control MethodologiesBy Michael Karmis
During the last 25 years, technological advancement and subsidence research have resulted in more accurate and diverse prediction capabilities. The work presented in this paper focuses on the developm
Jan 1, 2008
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Design Trade-Off For Angle Roof DrillingBy James H. Fletcher
Much data and experience has been accumulated, especially in the last 5 or 6 years, to show that modern roof trusses, both of the Birmingham type and the bolt-and-channel type, perform well to support
Jan 1, 1982
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Ground Deformation In The Case Of Underground Mining Of Thick And Dip Coal Seams In The Jiu Valley BasinBy Gheorghe Oncioiu
The phenomena developed on the influence of thick coal seam no.3 mining, by horizontal slices and rocks caving roof control, in the Jiu Valley coal basin, are very complex. By analyzing the influence
Jan 1, 1999
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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