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Experimental Study Of Line Electrode Method To Detect Underground CavitiesBy F. Ziaie
Line electrical resistivity method using physically infinite distance between current line electrodes is proposed to determine the location of mine workings. In this method at least three line electro
Jan 1, 1989
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Roof Bolter Rocker Pad Deflector Systems (6ff5d1f9-2211-4169-8a90-2ad9493ee24a)By Arnold Hammons
Automated temporary roof support (ATRS) systems have been incorporated into roof bolters since the 1970?s. During roof bolting, many injuries have occurred from large pieces of draw rock falling inby
Jan 1, 2009
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Mine-Wide Monitoring Applications In Ground Control ResearchBy David Conover
Technological advancements in electronic sensors and mine-wide monitoring systems have improved remote monitoring and analysis of underground mining information. The effective use of . these systems f
Jan 1, 1990
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Improved Intersection Design And Monitoring In The Sydney CoalfieldBy G. R. Corbett
The introduction of roof bolts to Phalen Colliery in the Sydney Coalfield, Nova Scotia (annual output of 2Mt) has been successfully implemented in maingate and tailgate entries over the last four year
Jan 1, 1995
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Evaluation And Design Considerations For Pillar/Roof Separation In An Operating Coal Mine (3e69124f-30b4-40c5-9503-bd59304b248f)By Mike Amick
As virgin coal reserves dwindle, more and more mines are being opened in areas with previous mining. As addressed in this conference before, there are solutions available for designing mines extracti
Jan 1, 2009
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Characteristics of Seismic Field Generated by Bed Separation and Application Seismic Technique for Exploration of Bed Separation and Grouting ResearchBy Jiulong Cheng
Underground coal mining causes overburden deformation and failure, one major form of which is bed separation in the overburden. Surface subsidence can be controlled by injecting grout into the bed sep
Jan 1, 2006
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Subsidence monitoring at a shallow partial extraction room-and-pillar mine in midwestem United StateBy Yoginder P. Chugh
Subsidence may be observed above partial extraction shallow room-and-pillar mines where the coal seam(s) is associated with weak and thick claystone in the floor. This paper presents results of subsid
Jan 1, 1989
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New Monitoring Technologies for Measuring the in-situ Performance of Rock BoltsBy Hani Mitri
Understanding the interaction between rock bolts and underground rock movement is critical for safe and cost effective underground excavation design. Although early research on this subject involved a
Jan 1, 2012
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CISPM - A subsidence prediction modelBy Y. Luo
A PC based computer model has been developed by the authors for predicting the surface subsidence due to underground coal mining. Its reliability, comprehensiveness and user friendliness demonstrate t
Jan 1, 1989
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Crinum Mine 15 Longwalls in Weak Roof What Did We Learn about Supporting the Ground?By Dan Payne
The Crinum mine has recently completed workings in the southern area of the mine. Over the 10 years of longwall production 40 million tonnes have been extracted and the mine has experienced over 40 lo
Jan 1, 2008
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Mitigating the Effects of High Horizontal Stress on Ground Control in An Underground Stone Mine: A Case HistoryBy John Ellenberger
The nature of a stone deposit is rarely defined through exploration and engineering design, but more through the actual experience encountered as the mine develops; hence, issues with ground control a
Jan 1, 2012
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Premining Stability Analysis Of A Shaft Pillar At The Homestake MineBy J. C. Johnson
High-grade ore found in a shaft pillar at the Homestake Mine prompted a request for a Bureau of Mines study to determine if selected areas of the shaft pillar could be mined without jeopardizing the s
Jan 1, 1989
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The Use Of Rim- To Detect Geologic Anomalies In The Clarion SeamBy M. Craig Miller
As the trend continues in the U. S. toward inceased capital investment in longwall mining equipment and wider panels. the risk also increases for gotential financial and production loses due to undete
Jan 1, 1990
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CISPM-MS: A Tool to Predict Surface Subsidence and to Study Interactions Associated with Multi?Seam Mining OperationsBy Yi Luo
Multiple-seam mining operations induce surface subsidence basins different from those caused by mining in a single coal seam, and also disturb the mining operations in the other coal seams. A computer
Jan 1, 2012
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The Effect of Immediate Strata on Pillar Behavior in Retreat Pillaring-- A Case StudyBy A. W. Khair
This paper deals with the analysis of pillar failure in a room and pillar mining operation of a deep underground coal mine. The incident here involved the failure of more than 100 pillars. The mechan
Jan 1, 1986
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Numerical Modelling of the Range of Rock Fracture Zone Around Gateroads on the Basis of Underground Measurement Results (edbcb7c0-6a88-4056-904b-d121adf0097c)By Andrzej Walentek
This paper presents the results of numerical modeling of the fractured zone around longwall gateroads. The numerical computations have been based on the results of underground measurements of the frac
Jan 1, 2009
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Numerical simulation of coal pillar loading with the aid of a strain-softening finite difference modelBy A. T. Iannacchione
Numerical simulation of coal pi1lar loading has traditionally been a difficult task due to the unique and highly variable properties of coal and the inability of numerical procedures to duplicate thes
Jan 1, 1989
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Coal Pillar Life Prediction in the Vaal Basin, South AfricaBy J. Nielen van der Merwe
This investigation was done to develop a method to predict the lie of coal pillars. It has long since been known that coal pillars deteriorate over time, but there was no method to quantify the deteri
Jan 1, 1998
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Monitoring Subsidence Over Submarine Coal Mines In The Sydney Coalfield By Bathymetric MethodsBy David Forrester
Subsidence beneath the land surface has traditionally been monitored using the most accurate surveying methods of the day. Over the several hundred years of subsidence investigation, these techniques
Jan 1, 1996
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A Mine Evaluation Protocol Using Applied Rock Mechanics TechniquesBy Gary B. Petersen
The author has developed a seven-step process called the Applied Rock Mechanics (ARM) Protocol that the author has used to solve numerous roof stability problems in mines throughout North America sinc
Jan 1, 2012