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Development And Demonstration Of An Alternate Mining Geometry For Improved Ground Control In An Illinois Coal MineBy Y. P. Chugh
About 60-70% of the underground mined coal in Illinois is extracted using a room-and-pillar mining method that permits extraction of about 50% of the coal. The remaining coal is left behind in the for
Jan 1, 2004
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MSHA Technical Review of Proposed Mine Designs for U.S.Underground Coal MinesBy Michael Gauna
Ground fall injuries and fatalities in United States underground coal mines have shown a diminishing trend. Advances in bolting and standing support systems have led to improved safety in underground
Jan 1, 2011
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Mapping and Application of Roof Joint Patterns for Ground Control inAn Illinois MineBy Kenny D. Basnett
An analysis of the Roof Falls Data Base (RFDB) for underground coal mines in Illinois for the period 2004?2008 indicated that about 80% of the roof falls occur at intersections and are associated with
Jan 1, 2011
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Analysis Of Practical Ground Control Issues In Highwall MiningBy R. Karl Zipf
Highwall mining is an important coal mining method. Upwards of 60 highwall miners are presently in operation, and they may account for approximately 4% of total U.S. coal production. A review of the M
Jan 1, 2004
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Evaluating Roof Control In Underground Coal Mines With The Coal Mine Roof RatingThe U.S. Bureau of Mines (USBM) has developed the coal Mine Roof Rating (CMRR) to aid in ground control. This paper describes the application of the CMRR at four coal mines operated by a major U.S. co
Jan 1, 1994
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Numerical Modeling of the Pillar Confinement with Backfilling Material in Room?and?Pillar Coal MiningBy Andre Zingano
It is known that the backfilling confinement increases the pillar strength and also reduces the rib lateral displacement. With backfilling, it is possible to increase the room-and-pillar mining recove
Jan 1, 2011
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Determination of Effective Column Lengths for Resin-Grouted Roof BoltsBy W. A. Cincilla
The use of resin-grouted rock anchors continues to gain popularity in underground wall mines in the United States. It is estimated that during 1985, more than 30% and as many as 35% of all roof bolts
Jan 1, 1986
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Highwall Mining of Thick, Steeply Dipping Coal: A Case Study in Geotechnical Design and Recovery OptimizationBy David P. Conover, Jake Bain, Christopher M. Ross
"Highwall mining of thick (up to 100 ft) steeply dipping (20° or more) coal seams provides many challenges, both geotechnically and operationally because seam dips near or in excess of highwall mining
Jan 1, 2017
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Design Considerations For Cable Truss Secondary Supports In Roadways Of Underground CollieriesThe purpose and current practice of cable trusses in underground coal mines is briefly outlined and details of various cable truss designs are presented. The main part of the paper describes the in-si
Jan 1, 1992
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Experimental Study of Acoustic Emission Characteristics for Burst-prone Coal/Rock Fracture ProcessBy Liu Changyou
This paper analyzes experimentally the stress-strain relationship and the characteristics and variation trends of acoustic emission signals of the medium- and high-burst-prone coal/rock fracture proce
Jan 1, 2003
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The Coal Mine Roof Rating (CMRR) A Practical Rock Mass Classification For Coal MinesBy Gregory M. Molinda
The U.S. Bureau of Mines has developed a rock mass classification system for coal mine roof control. The Coal Mine Roof Rating System (CMRR) evaluates the structural competence of mine roof using simp
Jan 1, 1993
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Analysis Of Longwell Shields And Their Interaction With Surrounding Strata In A Deep Coal MineBy Duk-Won Park
A vast majority of the operating longwall sections use shield-type face supports to provide ground control in the United States. As a co-operative research program between the University of Alabama (U
Jan 1, 1992
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Pillar Design - Continuous Miner Butt Section And Longwall Development SectionsBy Lawrence R. Artler
The North American Coal Corporation, its subsidiaries and other coal companies, have been mining the Pittsburgh #8 seam in Eastern Ohio for several decades. Underground mining by the "room and pillar"
Jan 1, 1984
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Analysis of Roof Falls at and Recommendation of Roof Control Plansfor Rofomex Posphate MineBy Jinsheng Chen
For underground openings, many factors can cause roof failure and thus roof falls. The most common factors related to Mother Nature are weak roof lithology, geological structures, and an abnormal in-s
Jan 1, 2011
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Skin Failure Of Roof And Rib In Underground Coal MinesBy Eric R. Bauer
Skin failures of roof and rib in underground coal mines continue to be a significant safety hazard for mine workers. Skin failures do not usually involve failure of the support systems but result from
Jan 1, 1999
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Load And Deflection Response Of Ventilation Stoppings To Longwall Abutment Loading - A Case Study (49571726-6a2d-49b8-8ef0-957c4421195c)By David C. Oyler
Few studies have specifically measured and documented the large-scale loading behavior and durability of ventilation stoppings to mining induced movements, particularly from longwalls. Ventilation sto
Jan 1, 2001
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Influence Of Support Capacity And Geometry On Tailgate SupportBy E. Hosca
Alternative tailgate loading conditions due to conventional and conventional/yield pillar combinations were evaluated to define roof loading. In order to isolate different loading situations, the tail
Jan 1, 1994
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Evaluation of Instrumented Cable and Rebar Bolts as Ground Support at a Trona Mine (958ba3b7-4ed1-4b81-9815-5e4d6ebd9ea2)By Lewis A. Martin
Instrumented cable bolts developed at the Spokane Research Laboratory of the National Institute for Occupational Safety and Health were used in conjunction with existing ground control systems to moni
Jan 1, 2001
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Longwall Production, Maintenance, And Roof Control SystemBy W. Mark Hart
The current Automatic Data Acquisition system developed by some support manufacturers make it possible to monitor and record changes in leg pressure, DA RAM stroke in every shield and shearer position
Jan 1, 1994
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Investigation of Subsidence Over AML: A Case StudyBy P. M. Lin
The problem of abandoned mine land (AML) subsidence is getting more severe because abandoned mine lands which used to be located in the remote areas have been gradually developed into suburbs or even
Jan 1, 1987