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Mechanisms of Chimney Subsidence Over Abandoned Coal Mines
By Mario G. Karfakis
Mining related subsidence is a major concern over abandoned shallow coal mines. Many of the subsidence prone areas are presently used or will be used in the future for residential housing development.
Jan 1, 1987
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Hazard Mapping Combining Geostatistical Modeling Of Coal Mine Roof Quality Ratings With Numerical Modeling Of Stress Data
By J. Riefenberg
U.S. Bureau of Mines (USBM) researchers are developing a personal computer-based hazard mapping system for use in underground coal mines. Hazard mapping is rapidly gaining interest as delineating area
Jan 1, 1994
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Tailgate Support Evaluation at Plateau Mining Company
By H. N. Maleki
This paper presents a field evaluation of six tailgate secondary support systems, with the objective of optimizing support efficiency for maintaining open gate roads. Support systems consisted of a co
Jan 1, 1986
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Assessment of the Dynamic Loads Effect on Underground Mines Supports
By Kazem Oraee-Mirzamani
Blasting operations generate seismic effects in underground mines. These effects apply additional dynamic loads on the support system, which should bear both static and dynamic loads. Static loads are
Jan 1, 2011
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A Method For Establishing Site Specific Coal Pillar Design Guidelines
By Winton J. Gale
Coal mine pillar design formulae available to mine planners are typically based on relationships determined for specific site conditions. Application of these methods is difficult when other factors,
Jan 1, 1992
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Massive Pillar Failure--Two Case Studies
By David H. Tang
Similar massive pillar failures were observed in two underground coal mines with different configurations of mine workings and overburden depths. Finite element models were used to analyze the causes
Jan 1, 1984
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Preventing Falls Of Ground In Coal Mines With Exceptionally Low-Strength Roof: Two Case Studies
By Christopher Mark
Mines with exceptionally low-strength roof (UCS <3,500 psi and CMRR <40) are much more likely to struggle with roof falls than other mines. Weak-roof is a particular problem for many room and pillar m
Jan 1, 2004
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An Underground Trial Of Cable Slings For Remedial Support Of Longwall Gateroads
By William D. Gallant
This paper describes a joint cooperative project between the CANMET Cape Breton Coal Research Laboratory and the Cape Breton Development Corporation to conduct a trial of split set cable slings for re
Jan 1, 1990
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An Examination Of Energy Calculations Applied To Coal Bump Prediction
By Keith A. Heasley
Pillar recovery in deep coal mines with competent roof and floor can concentrate stresses and generate hazardous bumps. Actual calculation of the geologic strain energy released in association with th
Jan 1, 1990
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The Effectiveness Of Interpanel Pillars In The Control Of Surface Subsidence (ef7cc44b-3192-4f5f-a75c-62563d519797)
By Laxminarayan Holla
There exist many formulae for designing coal pillars. However, when applied to a given set of mining parameters, they lead to different pillar sizes and factors of safety. From the subsidence point of
Jan 1, 1992
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Overview of Safety Considerations with Highwall Mining Operations
By George Gardner
The rapid growth of highwall mining in the Appalachian coalfields has resulted in unique safety concerns. Due to the concentration of activity at the base of the highwall and the potentially destabili
Jan 1, 2002
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Subsurface Fracture Development Due To Longwall Mining And Its Interpretation Using Image Processing Techniques (736b40e1-a21a-40c0-a678-75088df69d02)
By Gexin Sun
This paper presents the physical modelling results of subsurface fracture development associated with longwall mining operations and an application of image processing techniques to interpretion of th
Jan 1, 1992
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Evaluation Of Surface Subsidence Potential Along A Pipeline Due To Abandoned Coal Mine Works
By Thomas L. Vandergrift
With the inevitable expansion of homes, businesses, and infrastructure in coal mining regions, the potential for future subsidence above abandoned mines is of increasing concern. Of particular concern
Jan 1, 2000
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Surface Structures Impacted By Subsidence From Pennsylvania Coal Mines, 2003 to 2008
By Anthony T. Iannacchione
Underground bituminous coal mining is a large and significant industry within the Commonwealth of Pennsylvania, and it has a legacy of environmental consequence. For example, in 2008, 13.5 acres (5.5
Jan 1, 2011
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Entry Stability Monitoring & Analysis For Longwall & Continuous Mining Systems
By Wm. Mark Hart
Under a specific geological condition, roof supporting method, and pillar-entry system, an entry convergence concept may be the most effective means that can be used to effectively indicate the longwa
Jan 1, 1995
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Floor Heave Control Outby the Seal Line in No. 11 West Kentucky Seam
By Joel Bradley, Kot Unrug, Kyle Perry, Mark Klimek
"A West Kentucky mine operation in No. 11 seam, encountered floor heave, due to the localized increase of the thickness in the fireclay mine floor. Floor heave has overridden seals installed in two mi
Jan 1, 2015
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Ground Control Technology for Mass Exploitation of Coal Deposits with Continuous Miner: A Review of the Indian Scenario
By Sanjay Kumar Singh
This paper presents ground control technology associated with a continuous mining operation for mass exploitation of underground coal deposits in the Indian coal mining Industry It shows that competen
Jan 1, 2011
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Design Of Shield Supports For The U.S. Coal Mining Industry
By Alan Peacock
Shield supports have been in use in the USA underground mines since 1975, and their development in the intervening time has been progressive and inovative. Specialized techniques are used to optimize
Jan 1, 1981
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Modern Geotechnical Exploration And Mine Design
By Patrick S. Artrip
A deep mining operation in the Lower Kelly (Imboden) seam in Wise County, Virginia experienced severe ground control conditions in its attempt to develop reserves situated under increasingly higher co
Jan 1, 1993
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Pressure Distribution Of 2-Leg Shield Supports (fb20894a-e0d3-49e8-b331-69176f4a54a3)
By Rao Pothini
Measurement of pressure distribution under the base plate of the Hemscheidt 2-leg 800-ton shield was performed underground for two shifts using 12 pressure cells installed in two rows, one each under
Jan 1, 1992