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Ground Control of Longwall Top–Coal Caving Faces within Thick Coal SeamsBy Jinwang Zhang, Zhaohui Wang, Jiachen Wang
"Thick coal seams (seam height larger than 3.5 m) account for a large portion of the proven coal reserves of China, and underground thick coal seam mining provides about 50% of the Chinese annual coal
Jan 1, 2017
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Rockbolting For Highly Stressed RoadwaysBy Holger Witthaus
The conditions of great mining depth and multi-seam¬longwalling require a special method of rockbolting, It can be described as a control loop which is based on the elements of planning, drivage and m
Jan 1, 2000
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Application of geotechnical and geophysical parameters to improve planning reliability in roadway drivageBy Nikolaos Polysos
To drive and utilise gate roads economically requires accurate planning and risk assessment considering the variable geomechanical requirements. The geomechanical part of roadway planning is secure
Jan 1, 2002
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Use of a Laser Grid System for Accurate Roof Bolt LocationBy William Kendall
"A tremendous amount of research, analysis, and engineering time is used to design a proper roof support system including the type, length, and location of the roof bolts. Unfortunately, since the roo
Jan 1, 2016
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Recent Advances in Numerical Simulation of Cutter Roof Failure in Underground Coal MinesBy Murali Gadde
Numerical simulation of cutter roof failure is a daunting coal mine excavation design issue. The complex progressive failure mechanisms associated with cutter failures are extremely difficult to repli
Jan 1, 2005
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Constraint Is The Prime Variable In Pillar StrengthBy Clarence O. Babcock
Since Vicat in 1833, the width to height ratio of a mine pillar has been taken as the fundamental variable in pillar design. From work in the laboratory by many investigators testing rock, Coal and co
Jan 1, 1984
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Catastrophic Failures of Underground Evaporite MinesBy Jeff Whyatt
Deformation of underground salt, trona and potash mines is generally time dependent, providing for gradual adjustment of strata to mining induced stresses. Time dependence can allow for higher extract
Jan 1, 2008
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A Study on Geotechnical Risks in Interaction Between Open-Pit and Block CavingBy Ezzeddin Bakhtavar
There are several geotechnical challenges and risks inherent in the interaction between the open-pit and block cave mining environments. This is especially true when they have to work simultaneously f
Jan 1, 2011
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Stable Entry Design In A Multi-Seam EnvironmentThe challenge of planning to minimize interaction effects in multi-seam mining is compounded by the difficulties inherent in extrapolating essential geological and spatial data between sampling points
Jan 1, 1994
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Mapping Hazards With Microseismic Technology To Anticipate Roof Falls - A Case Study (ac4523c6-7bdb-4660-a1cb-20433a65c0ed)By Anthony Iannacchione
As the amount of new fractured surfaces or "damaged rock layers" within roof rock increases, the stability of the rock mass decreases. While direct measurements of this phenomenon are not easily made,
Jan 1, 2004
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Seismic Events In German Hard Coal Mining (927aed19-540f-49d6-8a7e-8eb1cd5cfc71)By Axel Preusse
Underground coal mining can cause seismic events. There is currently no way to predict such phenomena reliably, in particular stronger events. That is why, according to the current state of the art, e
Jan 1, 2009
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Understanding the Connection between Blasting and Highwall StabilityBy R. Quentin Eades, Kyle Perry
"Surface mines continue to implement highwalls for several reasons, such as increasing recovery, improving margins, and justifying higher stripping ratios. Highwall stability is a complex issue that i
Jan 1, 2018
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UK Experience and Numerical Modelling for Planning and Supporting Deep Longwall Over-Mining OperationsBy Bowler Jonathan, Lorraine Kent, Tereza Crisu, Stuart Walker, Nicholas Lightfoot
"It has been the practice in Europe to extract the most economic seams first: taking the seams sequentially, top down, to avoid operating within the fractured strata formed by the subsidence trough ab
Jan 1, 2016
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Application of Electrohydrodynamic Method and High-Pressure Water Jets as Non-Blasting Alternative of Rock Breaking and Splitting in Open PitsBy Krzysztof Kotwica
The steady demand for rock materials leads not only to on increase in mining but to the need for decreasing the loss of material in the process of exploitation as well. It brings about an increase in
Jan 1, 2006
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The Importance of Underground Stone Mine Roof GeologyBy Frank Kendorski
Several startup or longtime underground stone mines have experienced unanticipated roof control difficulties due to the variable geologic character of the roof strata. Careful mapping of roof conditio
Jan 1, 2002
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How To Cope With Cutter Roof Problem (e6639bdb-2d11-4a70-a3df-8a3a479f7b3e)By A. Wahab Khair
This paper presents results of the experiments carried out in Beth Energy No. 33 Mine for the purpose of alleviating problems associated with cutter roof. Cutter roof problems have delayed the advance
Jan 1, 1992
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Caving, Seismicity, and Mine Design in Four Utah MinesBy Hamid Maleki
Having developed a methodology for estimating mining-induced seismicity resulting from slip along geological discontinuities in 2003, in this paper, the importance of measurements are high-lighted in
Jan 1, 2006
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Application of Updated Joint Detection Algorithm for the Analysis of Drilling Parameters of Roof Bolters in Multiple Joints ConditionsBy Jamal Rostami, Asok Ray, Samer S. Saab Jr., Wenpeng Liu
Ground instability, such as roof or rib failures, is one of the most serious and frequent safety hazards that occur in underground mining, tunneling, and underground construction. The ground-related p
Jan 1, 2017
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Volumetric Measurement of Rock Movement Using PhotogrammetryBy Stephen R. Iverson, Jeffrey C. Johnson, Donovan J. Benton, Michael J. Raffaldi, Lewis A. Martin
"The NIOSH ground control safety research program at Spokane, Washington, is exploring applications of photogrammetry to rock mass and support monitoring. This paper describes two ways photogrammetric
Jan 1, 2015
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Surface Subsidence. in Longwall Mining--A Case StudBy R. D. Yancich
A case study of longwall mining surface subsidence was performed at a mine in Southwestern Pennsylvania. The mine operated in the Pittsburgh coal seam which averaged 70-72 inches with 6-8 inches draw
Jan 1, 1984