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Deign of Support System for Mining Tunnels in Carboniferous Rock ConditionsBy B. N. Whittaker
The paper briefly reviews the type of support and stability problems encountered in mining tunnels in U.K. Carboniferous rock conditions, particularly the Coal Measures where almost all such tunnels a
Jan 1, 1987
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Rockbolted Support of Retreat Longwall Gateroads at 1000m Depth: A Case HistoryBy Karl Brandt
Longwall panel 580 has recently been retreated in the Zollverein 1/2 seam at a depth of approximately 1000m at Auguste Victoria mine with rectangular rockbolted roadways used for both the maingate and
Jan 1, 2002
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Evaluation Of Existing Predictive Methods For Mine Subsidence In The U. S. (1ec2d374-5864-4775-9b19-24759c4f95be)By Vladimir Adamek
Two existing predictive methods were chosen for evaluation; an influence function (Gals Theory) and a profile function (hyperbolic). These were applied to several field measured subsidence pro¬files o
Jan 1, 1981
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Mining Under Strong RoofBy K. Y. Haramy
Strong roof helps minimize roof fall problems in coal mine entries. However, the Inability of strong roof to cave readily may contribute to major ground control problems In Iongwall and retreat mining
Jan 1, 1988
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State Of The Art Testing Of Powered Roof SupportsBy Robert C. Garson
The Mine Roof Simulator at the DOE'S Mining Equipment Test Facility is described. Its use in the research and development on the behavior and response of longwall roof supports to simulated mine
Jan 1, 1982
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Pumpable Roof Supports: Developing Design Criteria by Measurement of the Ground Reaction Curve (8ba91e71-c09d-4bd5-afc0-848b526c152b)By Thomas Barczak
Pumpable roof supports provide an alternative longwall tailgate roof support and have grown in usage during the past few years. Heintzmann Corporation has been installing pumpable roof supports at the
Jan 1, 2003
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The Control Of Surface Subsidence By Width/Depth Ratio And Chain Pillar Size In The Presence Of Competent Coal MeasuresBy E. H. R. Schumann
The local stratigraphy and composition of the coal measures, including competent dolerite sill and massive sandstone lavers is shown to have a restricting influence on the development and magnitude of
Jan 1, 1988
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Geomechanical Criteria of Longwall Face Support Selection at Consol MinesBy D. W. H. Su
This paper describes geomechanical criteria employed by Consol Energy for selecting mine-specific longwall face supports in the past decade. The criteria include immediate and main roof rock character
Jan 1, 2004
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Utilizing The ?Advance And Relieve? Method To Reduce Horizontal Stress Affects On The Mine Roof, A Case Study (b5b945af-699f-46b0-ae56-a98434baad9f)By Dennis R. Dolinar
A room and pillar coal operation in central Pennsylvania was experiencing roof cutters and long running roof falls caused by high horizontal stresses. The roof conditions created hazards for the miner
Jan 1, 2000
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Modern Geotechnical Exploration And Mine DesignBy 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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International Experience with Longwall Mining into Pre-driven Rooms (7f55d3bb-2127-4b96-860d-e3684bbd8397)By David Oyler
Unusual circumstances may require that a longwall retreat into or through a previously driven room. The operation can be completed successfully, but there have been a number of spectacular failures wh
Jan 1, 1998
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A Cooperative Study Of Gate Entry Designs Welbeck Colliery (UK) And Jim Walter Resources (USA)By Greg Hendon
Longwall developments in the UK have historically consisted of single entry gate roads. Adjacent developments were separated from existing panels by large barrier pillars (designed of sufficient width
Jan 1, 1995
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Reformation Of The Hydraulic Stowing Mining Method (81b9f573-b6ec-447f-bbcd-728c29bd41c4)By Liang Yinhuai
The hydraulic-stowing mining method is most effective for mining thick coal seams. It is superior to the sliced cover-caving and artificial mining method and the fully mechanized sublevel-caving minin
Jan 1, 1992
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Practical Detection Of Underground Mine Roof FailureBy David Bigby
The paper describes research undertaken on an ECSC/K HSE project which investigated several potential physical principles which might be harnessed to provide a non-intrusive means of determining the e
Jan 1, 2004
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Rock Fracture, Caving and Interaction of Face Supports Under Different Geological Environments. Experience from Australian Coal MineBy Winston Gale
This paper is presents a summary of recent investigations into fracture and caving about longwall panels. The results of these investigations indicate that rock failure initiates well ahead of the lon
Jan 1, 2004
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How to Design an Efficient Roof Bolting Plan Based on Simple In-Mine MeasurementsBy C. J. H. Brest van Kempen
The techniques developed should provide a useful tool, not only during the initial formulation of a suitable bolting plan for a new section, but also for periodic check¬ing on the utilization factor
Jan 1, 1986
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Development Of Stress Measurement Techniques In Bump-Prone Coal For Safety DecisionsBy Eric G. Zahl
Researchers at the Spokane Research Laboratory of the National institute for Occupational Safety and health are evaluating stress and displacement measurements in a longwall coal mine. The objective i
Jan 1, 2000
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Stooping Low Safety Factor Pillars at Goedehoop Colliery - 12 Months LaterBy Gift Makusha
Pre-feasibility work at Goedehoop Colliery indicated that stooping of the undersized pillars could be undertaken safely and economically. In light of the findings a decision was taken in may 2003 to u
Jan 1, 2004
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Study on Eco-Friendly Underground Mining System for Ultra-Thick Coal Seams in ThailandBy Takashi Sasaoka
EGAT Mae Moh Lignite Mine in Thailand produces about 16 million tons of lignite annually from open-cut mining. The coal is used to generate 2,400 MW of electricity. In the near future, however, the co
Jan 1, 2011
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Design, Monitoring And Evaluation Of A Pre-Driven Longwall Recovery RoomBy Tom Wynne
In order to shorten the time required and improve safety for a longwall face move, a 36-ft wide longwall recovery room was predriven. The room was supported with specialty bolts, trusses and concre
Jan 1, 1993