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Investigating Abutment Load
By Ihsan Berk Tulu
In the Analysis of Retreat Mining Pillar Stability (ARMPS) program, the magnitude of the abutment loading adjacent to a gob area is calculated using an ?abutment angle? concept. The extent of the abut
Jan 1, 2012
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In-Situ Performance Analysis Of Immediate Forward Support (IFS) Systems In Thin-Medium Seam Sections In The United Kingdom
By 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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Weightings And Water Inflows During Longwall Working
By I. W. Farmer
Weightings and water inflows into longwall workings often occur together, giving rise to discussions on their relative genesis. Case histories are introduced which indicate that most water inflows are
Jan 1, 1996
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Mine Stability Mapping
By Collin L. Stewart
The high cost and limited flexibility of modern longwall systems has resulted in the need for mine engineers and geologists to predict possible adverse mining areas ahead of mining and to then design
Jan 1, 2006
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Design Methods To Control Violent Pillar Failures In Room-And-Pillar Mines (V. S. Bureau of Mines)
By R. Karl Zipf
The sudden, violent collapse of large areas of room-and-pillar mines poses a special hazard to miners and mine operators. This type of failure, termed a "Cascading Pillar Failure" (CPF), occurs when o
Jan 1, 1996
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Rib Support Innovation At Daw Mill Colliery (a22a0861-1502-4d3d-a2cd-8a6ba0c13271)
By Jon Bowler
Daw Mill Colliery, UK Coal, near Coventry in England, mines the Warwickshire Thick Seam at 800 m/2500 ft depth using longwall retreat with gateroads supported by rockbolts. Over the last eight years
Jan 1, 2009
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Development and Field Tests of Look-Ahead Radar and Horizon Sensing for Coal Cutting Drums
By Gerald L. Stolarczyk
Safe and efficient coal extraction requires advanced radar subsystems that can be mounted on cutting drums of coal cutting machines. A look-ahead radar (LAR) must solve the radio geophysics problem o
Jan 1, 2006
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Multiple Seam Mining Feasibility in the Illinois Basin (USA): LaModel Stress Analysis Programs
By Rebecca Hardy
The escalating demand for coal, in addition to the steady depletion of reserves, has produced increasingly difficult mining conditions for coal mining companies within the United States, resulting in
Jan 1, 2006
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Prevention Of Time-Dependent Subsidence By Elimination Of Ground Movement Over An Abandoned Mine
By 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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Recent UK Experience of Working above Previously Extracted Longwalls
By David Bigby
In the UK, it is becoming increasingly necessary to open new longwall mining areas above old, abandoned workings. In such cases, strategic and gate roadways must often be driven and maintained acros
Jan 1, 2007
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A Roof Quality Index For Stone Mines Using Borescope Logging
By John Ellenberger
The National Institute for Occupational Safety and Health (NIOSH) has collected pillar and span data at 34 stone mines in 10 states to develop pillar and roof span design guidelines for underground st
Jan 1, 2009
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Empirical Mine Design for Western Underground Metal Mines
By Thomas M. Brady
The Spokane Research Laboratory/NIOSH and the University of British Columbia (UBC) geomechanics group are focusing on the development of safe and cost-effective underground design guidelines for weak
Jan 1, 2006
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New Monitoring Technologies for Measuring the in-situ Performance of Rock Bolts
By Hani Mitri
Understanding the interaction between rock bolts and underground rock movement is critical for safe and cost effective underground excavation design. Although early research on this subject involved a
Jan 1, 2012
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Pillar Strength and Design Methodology for Stone Mines
By Gabriel Esterhuizen
Underground stone mines in the United States make use of the room-and-pillar method of mining. A prerequisite for a safe working environment is that the pillars should adequately support the overburd
Jan 1, 2008
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Analysis of Multiple Seam Stability
By Christopher Mark
Multiple seam interactions are a major ground control hazard in many U.S. underground coal mines. The two most common types are: ? Undermining, where stress concentrations caused by previous ful
Jan 1, 2007
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The Fault At The End Of The Tunnel
By S. S. Rowland
Good afternoon, ladies and gentlemen. It is a pleasure, for several reasons, to be here at this 13th International Conference on Ground Control in Mining. Of course it's always a pleasure to be a
Jan 1, 1994
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Characteristics of Seismic Field Generated by Bed Separation and Application Seismic Technique for Exploration of Bed Separation and Grouting Research
By Jiulong Cheng
Underground coal mining causes overburden deformation and failure, one major form of which is bed separation in the overburden. Surface subsidence can be controlled by injecting grout into the bed sep
Jan 1, 2006
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Performance Evaluation Of A Cable Bolted Yield-Abutment Gate Road System At The Crandall Canyon No. 1 Mine, Genwal Resources, Inc., Huntington, Utah
By J. R. Koehler
Although two-entry yield pillar-based gate roads supported by wooden cribs have been commonly used throughout longwalling in the Wasatch PlateadRoan Cliffs coalfield of central Utah, a three-entry yie
Jan 1, 1996
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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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Successful Application of Rock Bolt Support and Mechanised Depillaring in Difficult Roof Conditions at Tandsi Mine, Western Coalfields, India
By 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