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The Elimination of Rock-fall Fatalities in Ontario Hardrock MinesBy Douglas Morrison
Hardrock mines in Ontario generally operate at between 3,000 and 7,500 ft below surface and generally experience significant rockburst activity below 5,000 ft. Since the introduction of bulk mining te
Jan 1, 2003
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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
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Rock Mass Classification As An Aid To Estimating The Strength Of Coal Pillars (77026f3a-8230-4eb0-afbc-609f7a2ad471)Coal mass strength properties must be estimated to obtain realistic estimates of coal pillar strength. The limitations of existing techniques for approximating these properties are discussed. The coal
Jan 1, 1992
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Practical Stress Modeling for Mine PlanningBy Keith Heasley
As part of the initial investigation and validation of a new boundary-clement formulation for stress modeling in coal mines. the underground stresses and displacements at two multiple-seam coal mines
Jan 1, 1998
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Bailey Mine Slurry Impoundment Longwall Subsidence MonitoringBy Richard J. Perin
Subsidence monitoring was conducted in proximity to the 1-A and 2-A longwall panels at Consol Pennsylvania Coal Co.'s (CPCC) Bailey Mine slurry impoundment. Monitoring fullfills federal Mine Safe
Jan 1, 1988
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A Decade of Mobile Roof Support Application in the United StatesBy Larry Howe
Second, or retreat mhng with Mobile Roof Supports (MRS) has now been part of coal mining in the United States for a decade Their utilization has evolved into mining applications which vary in seam hei
Jan 1, 1998
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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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Field Measurements of Chain Pillar Response to Longwall Abutment LoadsBy Christopher Mark
Current longwall pillar design methods are based on many assumptions about pillar and entry response to longwall abutment loads. Knowledge of the magnitude and time-of-arrival of abutment loads is ess
Jan 1, 1986
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Acoustic Scanner Analysis of Borehole Breakout to Define the Stress Field Across Mine Sites in the Sydney and Bowen Basins, AustraliaBy S. MacGregor
The role of horizontal stress, its orientation and magnitude, in defining the behaviour of strata in underground coal mines has been well established. Poor panel layouts have led to gate end stress co
Jan 1, 2002
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Radon Detection of Mining–Induced Fractures in Overlying Strata of Shallow Coal Seams in ChinaBy Dongsheng Zhang, Xufeng Wang, Wei Zhang, Gangwei Fan
"Large-scale longwall mining of shallow coal seams could cause mining-induced fractures to communicate with the surface immediately in Northwest China, leading to a series of mine safety and environme
Jan 1, 2015
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RQD from the Barrel to the Box: Weatherability May be a Better indicator for Roof Support DesignBy Kot Unrug
For the purposes of underground mine design, twelve cores of the Springfield (V) Coal (Pennsylvanian) roof and floor were retrieved. Each core was photographed, described fresh in the barrel, and the
Jan 1, 2003
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The Characteristics Of Mining-Induced Fractures In Overlying StrataBy Jialin Xu
Bed separations position, size, development characteristics and their influence factors have been analyzed in-depth by experimental and theoretical methods. The results show that the key strata determ
Jan 1, 2003
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Design Factors In Near-Seam InteractionBy A. Grenoble
The mining of seams in close proximity can greatly accentuate interaction problems. At distances of less than 110 feet vertically interaction can occur for both over and under mining. Research into gr
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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Mine Convergence When Using Mobile Roof Supports In Pillar RecoveryBy J. R. Stoltz
To date, there has been limited formal research dealing with the use of Mobile Roof Supports (MRS) for pillar recovery. This paper, which is a portion of a larger project, presents convergence data fr
Jan 1, 1999
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Assessment Of Underground Structural DesignBy Eugene D. Krupa
Mine 33 of Beth Energy has serious and complex roof cutter problems causing delay of the advance rate of both the entry development and longwall face retreat. The cost of maintaining these entries is
Jan 1, 1990
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Imaging Ahead Of Mining With Radio Imaging Method (RIM-IV) Instrumentation And Three-Dimensional Tomography SoftwareBy Larry Stolarczyk
A clear vision of the future coal mining industry was developed into a hierarchy of technology needs by the National Mining Association (NMA) and the Chief Executive Officers of the mining industry. A
Jan 1, 2003
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Root Causes of Groundfall Related Incidents in U.S. Mining Industry (2ced207f-73e6-4ab3-8c4e-7a683f4eb75c)By Kousick Biswas
The main objective of occupational health and safety research is to minimize or eliminate the events that may cause fatal or non¬fatal injuries to human workers. A commonly used technique is to devise
Jan 1, 2003
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Roof Screening: Best Practices and Roof Bolting Machines (e5909744-6953-4a41-b02f-21226966b63f)By Susan Robertson
Many injuries are caused each year by rock falls in coal mines. Most of these injuries are not caused by major roof collapses, but from falls of smaller rocks from the immediate top or roof skin. Vari
Jan 1, 2002
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A Method for the Selection of Rock Support Based on Bolt Loading MeasurementsBy Stephen P. Signer
A method to assist in the evaluation and selection of roof bolts using in situ measurements of roof bolt loading has been developed by researchers of the Spokane Research Center, National Institute of
Jan 1, 1997