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The Advance And Relieve Mining Method: A Horizontal Stress Control TechniqueBy Frank E. Chase
Sacrificial entries, roof slotting, and other tactics have been used to combat high horizontal stresses during roadway development in U.S. coal mines. In Australia, the "pillar extraction on the advan
Jan 1, 1999
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Sidewall Fracturing In Coal Room And Pillar And Pillar Extraction Panels (fdea63a5-d54d-46e2-aad5-6c4f1c72e2f1)By André Vervoort
In coal room and pillar, and pillar extraction panels, the sidewall conditions were investigated based on underground measurements and numerical simulations. Three-dimensional linear elastic models pr
Jan 1, 1992
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Estimating Rock Strengths Using Drilling Parameters During Roof Bolting Operations - Progress ReportBy Yi Luo
Accurate mechanical and geological information of the roof strata is vital for roof bolting design in underground mines. In order to obtain such information in a timely manner, a research has been und
Jan 1, 2002
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Regional Horizontal Stress And Its Effect On Longwall Mining In The Northern Appalachian Coal FieldBy D. W. H. Su
This paper presents the results of ill situ horizontal stress measurements using a Minifrac system in several northern Appalachian coal mines. The effect of stress magnitude and orientation on longwal
Jan 1, 1995
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Evaluation Of Subsidence Parameters For Inclined Seams In UK CoalfieldsBy X. L. Yao
This paper analyses the effects of mining extraction geometry (width/depth ratio) and dip of seam on subsidence parameters based on a large Database, containing 120 longwall mining cases all within th
Jan 1, 1990
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Reinforcement of Large Pillars by Bolting (8821999e-4c04-46db-a69e-e7a56781ac96)By S. J. Mitchell
An analysis of bolting reinforcement of several large [approximately 18 m (60 ft) cube] pillars was performed. The many overcoring stress profiles in pillars at the mine were used to produce generaliz
Jan 1, 1984
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Stress Control Method Applied to Stabilization of Underground Coal Mine Openings (e5cbe8ad-30a8-4144-a7b5-db19e81a247a)By Shosei Serata
Serious floor heave of up to 2.4 m in a 2.4-m high mine entry was eliminated by applying the stress control method of mining, as a last resort, at the No. 5 coal mine of Jim Walter Resources, Inc., in
Jan 1, 1984
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Simulated Materials Modeling And Analysis Of The Overburden Strata Movement In Top Coal Caving MiningBy Zhou Ying
Based on the mining condition and roof lithology of the 2-3 coal seam at Gengcun Mine, the simulated materials modeling method was used to study the movement process and characteristics of overburden
Jan 1, 2001
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Developments in Sealant Support Systems for Ground Control (21st international Conference on Ground Control in Mining)By Deno Pappas
During the past few years, the Pittsburgh Research Laboratory of the National Institute for Occupational Safety and Health (NIOSH) has been evaluating developments in sealant support systems from a gr
Jan 1, 2002
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A Case History of Computer-Aided Lineament Analysis for Ground Control PlanningBy C. D. Peters
The Bureau of Mines has been researching remote sensing analysis of an underground coal mining area in Utah and computer-aided methods of defining ground control hazards in this mining area. As a resu
Jan 1, 1986
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Optimizing Secondary Roof Support With The NIOSH Support Technology Optimization Program (STOP) (9d51b6a2-7ba0-4aba-9b0e-5647ea8b90eb)By Thomas M. Barczak
The decade of the 90's brought an unprecedented increase in the development of innovative technologies to provide more effective and easier to install roof support in underground mines. To facili
Jan 1, 2000
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Rock Reinforcement LongevityBy Francis S. Kendorski
Rock reinforcement has been in widespread use and generally has been accepted in underground mining and tunneling since the 1950s. The first rock reinforcement technologies employed were mechanical an
Jan 1, 2000
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Mitigating Subsidence Influences on Residential Structures Caused by Longwall Mining OperationsBy Yi Luo
The severity of disturbances caused by longwall mining subsidence to various residential structures can be re¬duced. The success of such mitigation efforts depends on accurate subsidence prediction, c
Jan 1, 2003
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Downhole Overcoring Stress Measurement at a Western Underground Coal MineBy David Conover
Knowledge of the magnitude and direction of the horizontal secondary principal stresses is a critical factor in designing the layout and mining sequence of underground openings. Typically, horizontal
Jan 1, 2004
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Application Of DDM To Some Rock Pressure Problems In Japanese Deep Coal MinesBy Yoshiaki Fujii
Displacement Discontinuity Method (DDM), which was originally developed by Crouch,S.L., is a powerful tool to calculate mechanical disturbances due to tabular excavations. Three topics on DDM applicat
Jan 1, 1992
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Tensile roof failure arising from horizontal compressive stress and geological slipsBy Alan Bugden
Goedehoop colliery in South Africa has experienced a number of substantial roof falls in roadways and intersections. Many of these have been associated with geological slips and/or horizontal compress
Jan 1, 2003
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Longwall Roof Fall Prediction and Shield Support RecommendationsBy Ulrich Langosch
In the 1990s the German mining industry introduced a new generation of shield supports. The new design of support has a maximum load capacity of 10,000 kN, making these units as strong as the shields
Jan 1, 2003
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Causes of Massive Directional Roof Falls in Room and Pillar Mines - Two Case StudiesBy S. S. Peng
In recent years many roof falls have been conveniently attributed to the adverse existence of a high horizontal stress. The normal practice of not conducting a follow-up study in a roof fall investiga
Jan 1, 1999
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Review Of Pillar Design Equations Including The Effects Of ConstraintBy C. Babcock
This Bureau of Mines report considers some equations for mine pillar design from 1833 to the present. Most of the equations are of essentially the same kind, using pillar width to height relationships
Jan 1, 1981
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Investigation Of Pillar-Roof Contact Failure In Northern Appalachian Stone Mine Workings (55897abb-5ce0-4661-bf26-04d03fe5d67b)By Gabriel Esterhuizen
The roof rock in underground limestone mines in Northern Appalachia can be subject to high horizontal stresses in spite of the shallow depth of the workings. The high stresses can cause roof stability
Jan 1, 2004