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Subsurface Fracture Development Due To Longwall Mining And Its Interpretation Using Image Processing Techniques (736b40e1-a21a-40c0-a678-75088df69d02)By Gexin Sun
This paper presents the physical modelling results of subsurface fracture development associated with longwall mining operations and an application of image processing techniques to interpretion of th
Jan 1, 1992
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Performance and Safety Considerations of Hydraulic Support Systems (eb62774d-dbca-420f-b228-950711bafbce)By Thomas Barczak
Hydraulic cylinders are used in several roof support systems, such as longwall shields and mobile roof supports, to provide critical ground control Many state-of-the-art hydraulic support system opera
Jan 1, 1998
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Statistical Characterization Of Coal-Mine Roof Failure: Suggestions And Case StudyBy Alan D. Smith
[A standardized checklist in a questionnaire format, was established to investigate selected factors associated with coal nips roof falls, as derived from an intensive review of the literature. A plot
Jan 1, 1984
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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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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
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Geophysics For The Detection Of Abandoned Mine WorkingsBy Christopher Phillips
In light of recent events in the mining industry, there has been an increasing demand for technology to detect underground voids and abandoned mine workings. This paper summarizes the use of geophysic
Jan 1, 2003
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Design Aspects In Multiple-Seam Mining: Case StudiesBy Gregory J. Chekan
Developing a coal seam that has been influenced by previous mining in seams either above or below can result in severe ground control problems. In many instances, interactions between operations are i
Jan 1, 1990
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Time Dependent Strength Of Coal Strata For Long-Term Pillar StabilityBy Z. T. Bieniawski
A major study was performed on determination of long term strength of coal strata directed to the design of coal pillars to ensure their stability beyond the life-time of a mine. Based on field invest
Jan 1, 1994
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Longwall Surface Subsidence Prediction Through Numerical ModellingBy Noor Mohammad
Comprehensive numerical modelling of the subsidence associated with longwall mining in UK Coal Measures strata has been conducted and validated against UK data. The Rock Mass Classification System (RM
Jan 1, 1997
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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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Evaluation of Pillar Recovery in Southern West Virginia (0e64fb3d-0c07-4638-b455-a16004535ca1)By Chris Mark
Pillar recovery continues to be a significant ground control hazard. During the past decade, 10 miners were killed during pillar extraction operations in southern West Virginia. Studies conducted duri
Jan 1, 2002
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Determining Horizontal Stress Direction Using The Stress Mapping TechniqueBy T. P. Mucho
Mine roof failure due to excessive horizontal stress has been recognized as a major cause of hazardous roof conditions in some mines. Stress measurements gathered by the U.S. Bureau of Mines (USBM) at
Jan 1, 1994
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Design Considerations For Bump-Prone Longwall MinesTailgate pillar and tailgate-face corner humps have been a major threat to longwall coal mines where hump-prone conditions exist. The yield pillar design concept, in which the longwall chain pillars a
Jan 1, 1999
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The Influence Of Horizontal Stress On Pillar Design And Mine Layout At Two Underground Limestone MinesBy Garth Kuhnhein
The Black River and Maysville underground limestone mines operated by Carmeuse Lime and Stone, Inc. in northeastem Kentucky are two of the largest underground limestone operations in the United States
Jan 1, 2004
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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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Development And Evaluation Of A Floor-Bearing Capacity Test ApparatusBy Daniel W. H. Su
A floor-bearing capacity test apparatus was designed and constructed to determine the true bearing capacity of soft floor materials beneath coal pillars or longwall face supports. The apparatus has be
Jan 1, 1993
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Australian Longwall Geomechanics - A Recent Study (52cb3b8b-6f2d-4969-ba9d-61fc0c2f72ec)By Russell C. Frith
This paper presents recent findings concerning longwall caving mechanisms relating to Australian mining conditions and their effect upon longwall support requirements and behaviour. The findings arc b
Jan 1, 1992
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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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Analysis Of Cable Bolt Performance Using Numerical ModelingBy M. Bouteldja
A finite element modelling approach is developed for the evaluation of the mechanical performance of cable bolts supports in underground mine structures. The modelling approach permits the simulation
Jan 1, 1999
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Comparative Analysis Of Longwall Gateroad Designs In Four Deep, Bump-Prone Western U.S. Coal MinesBy Matthew J. DeMarco
Research personnel at the U.S. Bureau of Mines have conducted longwall gate stability studies at four western U.S. mines attempting to employ yield pillars for improved ground conditions. Located in t
Jan 1, 1993