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Hydraulic Prestressing Units: An Innovation In Roof Support Technology (6dbf7428-5679-47b2-a60c-95193c59dbda)By Thomas Barczak
A new generation of hydraulic mine support prestressing devices has been developed. These thin-walled steel shells are machine-welded and can be inflated with water or any liquid to provide prestressi
Jan 1, 2004
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Resin-Grouted Cables For Longwall Tailgate Support StabilityBy Stephen C. Tadolini
The U.S. Bureau of Mines (USBM) is conducting research to provide alternatives for traditional secondary support methods. These cost-saving methods are proving to afford safer installation, improve en
Jan 1, 1994
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Mining Under Rivers In Fuxin Coal MinesBy Liang Yin-Huai
In Fuxin Coal Mines, there are more than 20 million tons of coal buried under seasonal streams. The coal seams are mostly shallow. We have mined more then 50 mining blocks distributed in 5 coal mines.
Jan 1, 1990
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Longwall Pace Bursts and Inadequate Caving: A Came StudyBy K. Y. Haramy
Deep coal mines with strong roof and floor strata frequently encounter face and rib bursts. The burst problem becomes more severe with increased depth. While the exact causes of bursts are often diffi
Jan 1, 1987
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Risk Assessment Of Geotechnical Factors Associated With Underground Thick Seam Mining MethodsBy Bruce K. Hebblewhit
Australia is well endowed with extensive reserves of thick underground coal scams, particularly in the range of 4.5m to 9m thicknesses. (For the purposes of this paper, thick scams are defined as bein
Jan 1, 2001
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A Method To Determine Expander Spacing For Steel Pipelines In Mining DistrictsBy Axel Preusse
In the Ruhr district, pipelines of public and private infrastructure are made of cast iron, steel, plastics or asbestos cement. Legal framework, technical regulations and normative standards define wh
Jan 1, 2004
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Pre-Driven Experimental Longwall Recovery Room Under Weak Roof Conditions - Design, Implementation, and EvaluationBy Stephen Tadolini
Reduction in the time required and improvements in safety during a longwall face move have compelled coal mine operators to examine and use pre-driven longwall recovery rooms. While this concept is no
Jan 1, 2002
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Updating the NlOSH Support Technology Optimization Program (STOP) With New Support Technologies and Additional Design FeaturesBy Thomas M. Barczak
The initial Support Technology Optimization Program (STOP), Version 1.0, was released at the 19th Gmund Control Conference. This original program has since been updated to Version 2.3 which was releas
Jan 1, 2001
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Pillar Design and Roof Support for Controlling Longwall Headgate Subject to High Horizontal StressesBy D. W. H. Su
A two-year study was conducted by CONSOL in a northern West Virginia coal mine to evaluate pillar design and support requirements to improve roof control in right-hand longwall headgates subject to hi
Jan 1, 2003
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Risk Assessment: Multiseam - Single Seam MiningBy L. Munsamy
The bulk of primary mining at the Anglo Coal's Bank Colliery was carried out by drill and blast method, in a bord and pillar layout exploiting the No. 2 Seam. Secondary extraction, top/bottom coa
Jan 1, 2004
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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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Application in Design for Close Proximity Multi-Seem MiningVirtually all mineable Appalachian coal seams exist in a multi-seam environment. This makes it inevitable that most seams will eventually experience interaction induced ground control and mining probl
Jan 1, 1987
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Utilizing The ?Advance And Relieve? Method To Reduce Horizontal Stress Affects On The Mine Roof, A Case Study (b5b945af-699f-46b0-ae56-a98434baad9f)By Dennis R. Dolinar
A room and pillar coal operation in central Pennsylvania was experiencing roof cutters and long running roof falls caused by high horizontal stresses. The roof conditions created hazards for the miner
Jan 1, 2000
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Safe Pillar Extraction Practice - Some Geotechnical Principles Based on Australian ExperienceBy Bruce K. Hebblewhite
Underground pillar extraction continues to be practiced in Australia in various forms, in spite of the dominance of the longwall method, which accounts for over 90% of underground production. Australi
Jan 1, 2011
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Management of Floor Heave at Bulga Underground Operations—A Case StudyBy Kudret Tutuk, Serkan Saydam, Sungsoon Mo
"This paper presents an overview of the floor heave management at the Glencore Bulga Underground Operations and investigates the contributing factors to the behaviour of the floor. The mine experience
Jan 1, 2018
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Application Of RMT's Remote Reading Telltale System To Monitor Roof Movement During Face Retreat At West Colliery, GermanyBy David Bigby
Rock Mechanics Technology has developed an intrinsically safe remote reading telltale system which allows up to 4 sets of 100 dual height, water diverting telltales in a mine roadway to be remotely mo
Jan 1, 2003
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The Use of the Area of Main Influence to Fix a Relevant Boundary for Mining Damages in GermanyBy Denise Mueller, Axel Preusse
"In 2010, the fracking discussion in Germany caused a number of changes in German law, which came into force in 2016. Especially the production of gas had to be regulated. With the legislation amendme
Jan 1, 2017
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Application of Tensioned Cable Bolts for Supplemental SupportBy Ben Mirabile, Alan Campoli, Rodney Poland
"The majority of U.S. underground coal mines use some form of cable bolt as supplemental support to a primary roof bolting system. Many coal operators employ the high load capacity of non-tensioned ca
Jan 1, 2010
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Overburden Failure Characteristics of Extra?Thick Seam Using Top Coal Caving Mining Method at Tongxin Coal MineBy Zhijie Zhu
In order to determine the overburden failure characteristics of extra-thick seam mining, EH4 electromagnetic image system and borehole televiewer survey were applied to panel 8100, Tongxin coal mine.
Jan 1, 2014
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An Analysis of Rock Failure Around a Deep Longwall Using MicroseismicsBy Keith Heasley
In this paper, a state-of-the-art, three-dimensional, full waveform, microseismic system was used to analyze the rock failure around a deep (> 750 in (2500 ft) of cover) bump-prone longwall panel. The
Jan 1, 2001