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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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Spatial Trends In Rock Strength - Can They Be Determined From Coreholes? (51393e91-3e75-4a8d-ac36-e107a993fe35)By Christopher Mark
Mine planning for a new reserve is based on information obtained from exploratory coreholes. A critical component of an exploration program is the geotechnical evaluation. Poor assumptions about roof
Jan 1, 2004
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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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Application Of Mechanical And Groundwater-Flow Models To Predict The Hydrogeologic Effects Of Longwall Subsidence - A Case StudyBy Danny J. Van Roosendaal
An investigation was undertaken to determine hydrogeological effects of subsidence over a longwall coal mine in the Illinois Basin. At this mine, approximately 200 ft of bedrock overburden is overlain
Jan 1, 1995
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Mining Subsidence Of An Urban Area In Ipswich, Queensland (3581bf43-8b41-4e5e-a797-55082bdbc493)By D. J. Maconochie
This paper describes the investigations and results of monitoring of deformations of houses located within the area of influence of a pillar collapse over the Westfalen No. 3 coal mine near Ipswich, Q
Jan 1, 1992
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Regional Horizontal Surface Displacements Due To Mining Beneath Severe Surface TopographyBy Bruce K. Hebblewhite
Tower Colliery is a longwall mine operated by BHP Coal Illawarra Collieries, Southwest of Sydney, Australia It mines the Bulli Seam at a depth of approximately 450m. The surface topography overlying t
Jan 1, 2000
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Geological Conditions At Continuous Miner Sections; Examples From Marrowbone Development Company, Mingo County, West VirginiaBy J. Marc Coolen
Marrowbone Development Company operates a large drift mining complex in the central Appalachian coal field. In 1997, five continuous miner supersections produced close to 9 million tons of raw plant f
Jan 1, 1999
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Design Of Roadway Support Using A Strain Softening ModelBy Jamal Hematian
Understanding the behaviour of rocks in a high horizontal stress field, such as that in Australia, is critical when analysing the stability of underground structures. This paper addresses the signific
Jan 1, 1994
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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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Parameters Affecting Resin-Anchored Cable Bolt Performance: Results Of In Situ EvaluationsBy Joseph C. Zelanko
Cable bolt support techniques. including hardware and anchorage systems, continue to evolve to meet U.S. mining requirements. For cable support systems to be successfully implemented into new ground c
Jan 1, 1995
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Remote Sensing Techniques In Mine Planning - Applications And LimitationsBy D. E. Winston
Roof falls are the major cause of fatalities in the, coal mining industry and the prevention of roof failure is a major concern of mine management. Many ground failures observed underground are associ
Jan 1, 1982
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Gateroad Pillar Extraction Experience at Jim Walter ResourcesBy Gregory Hendon
Jim Walter Resources, Inc. (JWR), has successfully longwall mined for many years at depths ranging from 1200'-2500'. However, full pillar extraction has proven difficult and generally econom
Jan 1, 1998
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Computer Modelling And In Situ Instrumentation Techniques: A Quantitative Approach To Scientific Mine DesignBy Bruce H. Gardner
This paper describes the application procedure of the Stress Control mine design method. This procedure has evolved over the past 20 years of the practice of this Method in trona, potash, salt, and, m
Jan 1, 1984
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Assessment of Roadway and Yielding-pillar Performance During Retreat Longwall Extraction at a United Kingdom Deep MineBy Leigh Sharpe
Dunng the last 5 years a United Kingdom colliery has utilised a yielding-pillar configuration to extract a relatively thick coal seam at a depth of 640 m. As part of ongoing research into the siting o
Jan 1, 1998
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Design And Experience Of Total Extraction Room And Pillar Operations Above Depleted Longwall PanelsBy Kenneth Rigsby
Black Mountain Resources' Highlands Mine No. I is a full extraction room and pillar operation located in Harlan County, Kentucky. Black Mountain extracts the 0.9 to 1.1 meter (36- to 42-inch) thi
Jan 1, 2003
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Analysis of Cutter Roof Using the Boundary Element MethodBy Mikko Ahola
This paper describes recent innovative analyses conducted by the Bureau of Mines to demonstrate the application of the boundary-element method in evaluating the effectiveness of caving chambers or sac
Jan 1, 1987
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The Role Of Engineering And Geology In Analyzing Ground Control ConditionsBy David A. Newman
Severe roof control problems have plagued a West Virginia underground mine since its initial development in the late 1970's. Adverse roof conditions in the Eastern portion of the reserve result f
Jan 1, 1999
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A Comparison Of Support Reactions To Retreat Longwall Front Abutment For Two Different Gateroad Support TechniquesBy Gary R. Corbett
The federally owned Cape Breton Development Corporation (CBDC) mines approximately 2.5-3.0 Mt of coal per annum from its Phalen Colliery. As part of an ongoing process to become more commercially viab
Jan 1, 1993
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Constraint Is The Prime Variable In Pillar StrengthBy Clarence O. Babcock
Since Vicat in 1833, the width to height ratio of a mine pillar has been taken as the fundamental variable in pillar design. From work in the laboratory by many investigators testing rock, Coal and co
Jan 1, 1984
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SOMA: A New Method to Calculate the Operative Stress Field: Results from the Laurel Mountain Mine, Russell Co., VirginiaBy Craig Byington
The stress-field orientation mapping and analysis (SOMA) technique for determining the operative stress field near mine workings and its relationship to various fracture sets is described using Dicken
Jan 1, 2004