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The Science of Empirical Design in Mining Rock MechanicsBy Christopher Mark
"Many problems in rock mechanics are limited by our imperfect knowledge of the material properties and failure mechanics of rock masses. Mining problems are somewhat unique, however, in that plenty of
Jan 1, 2015
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Comparison Of Empirical, Analytical, And Numerical Methods Of Pillar Design And The Development Of A Site Specific Pillar FormulaBy Vincent A. Scovazzo
Many accepted and useful methods have been developed and used for pillar design. Each method has its own particular strengths and weaknesses. Three methods addressed in this paper are; empirical, anal
Jan 1, 1995
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The Uniaxial Compressive Strength Of Coal: Should It Be Used To Design Pillars?By Christopher Mark
The Bureau of Mines has recently completed a comprehensive study of coal strength. More than 4000 individual test results from over 60 seams were extracted from the literature and combined in the most
Jan 1, 1996
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In-Situ Performance Analysis Of Immediate Forward Support (IFS) Systems In Thin-Medium Seam Sections In The United KingdomBy Paul N. Freeman
This paper describes the in-situ performance of two IFS powered support installations at Betws and Penallta Collieries in the South Wales Coalfield, United Kingdom. Intensive monitoring of all powe
Jan 1, 1992
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Influence Of Discontinuity Orientations And Strength On Cavability In A Confined EnvironmentBy L. J. Lorig
Much of the present knowledge about caving behavior of rock masses has been obtained from empirical observations. Additional notions about caving have been developed through inferences derived from tw
Jan 1, 1989
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A Case History of the Effect of Mine Subsidence on a Concrete Arch Bridge in Northern West VirginiaBy R. B. Alke
Request to Mine Beneath Bridge The Jabs Run Bridge is a reinforced portland concrete arch filled bridge located on WV Bouts 7 near Pentress, WV. The bridge has a span of 22.9 m (meters) and a height o
Jan 1, 1984
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Analysis Of Entry Roof Failure And Falls At Springvale CollieryBy Wm. Mark Hart
High horizontal stresses and shear failure have been considered the major reasons that cause entry roof failure and falls for underground mining. Therefore, reorientation of the current mining systems
Jan 1, 1996
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Prevention Of Time-Dependent Subsidence By Elimination Of Ground Movement Over An Abandoned MineBy V. V. Nazimko
Abandoned coal mines cause subsidence and structural damages. Shallow abandoned mines induce the most severe and harmful damages. In addition, they produce time-dependent subsidence which is difficult
Jan 1, 1999
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Mine-Wide Monitoring Applications In Ground Control ResearchBy David Conover
Technological advancements in electronic sensors and mine-wide monitoring systems have improved remote monitoring and analysis of underground mining information. The effective use of . these systems f
Jan 1, 1990
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Progressive Failure Of The V-Day Mine And A Comparison With Other Similar Failures In IllinoisBy G. C. Marino
The performance of the V-Day Mine near Danville, Illinois has been evaluated from data extending over about a 20 year period. The area included in this study involves over 16 acres. Essentially this e
Jan 1, 1990
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Design And Backfill Installation Considerations For Cut-And-Cover Coal Mine Slope Entry Using Steel Supports And Lagging (5aeac579-3675-40a9-b37e-6b4c5af947be)By Larry DeGraff
With the increase of new mine development in the past several years, many coal mines have decided to self- perform the design and construction for their slope development projects. The development pr
Jan 1, 2009
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Gate Entry Design For Longwalls Using The Coal Mine Roof RatingBy Chris Mark
Successful longwall mining requires a stable tailgate entry. Gate entry performance is influenced by a number of geotechnical and design factors, including: - Pillar size and pillar loading; - Ro
Jan 1, 1993
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Advancements in the Use of High-Modulus Polymer Mining Grids to Speed Longwall RecoveryBy Thomas A. Bailey
Since the advent of longwall mining, various methods and materials have been used during relocation to control the intrusion of the gob in the shield/panline area. (figure 1) Controlling this gob is c
Jan 1, 2006
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Longwall Mining in Illinois: A Controversy over Planned Subsidence of Flat FarmlandBy Daniel Barkley
Underground coal mining in Illinois has a lengthy history dating back to the early 1800?s. High extraction underground mining has played a significant role in production through out this time. Mode
Jan 1, 2007
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Successful Application of Rock Bolt Support and Mechanised Depillaring in Difficult Roof Conditions at Tandsi Mine, Western Coalfields, IndiaBy D. C. Oldroyd
Western Coalfield?s Tandsi Mine, has difficult support conditions and a history of roof falls, resulting in mining roadway widths and depths being restricted for safety reasons. Rock Mechanics Technol
Jan 1, 2006
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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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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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Cable Support Systems For Longwall Gate Road StabilityBy Stephen C. Tadolini
The U.S. Bureau of Mines, in cooperation with the Cyprus- Plateau Mining Company, has conducted research to provide an alternative to traditional secondary support systems in a two-entry, yield pillar
Jan 1, 1995
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Roof Control Analysis In North River MineBy Mike Watts
Since the first longwall panel development started in the new mining, (Southern) area, a number of roof falls have occurred in L1 and L2 gate-entries. The longwall was delayed for a total of two month
Jan 1, 2000
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Front abutment effects on supplemental support in predriven longwall equipment recovery roomsBy Jeffrey M. Listak
This report describes a study, conducted jointly by BethEnergy Mines Inc. and the Bureau of Mines, to assess the effects of longwall front abutment loading on various supplemental support materials u
Jan 1, 1989