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Continuous Monitoring Of Mechanised Breaker Line Supports To Investigate Roof And Pillar BehaviourBy I. L. Follington
A breaker line support (BLS) monitoring system, BLSmon, has been designed and constructed by the CSIRO and installed and commissioned at Laleham No.1 Colliery, Queensland. This system was designed to
Jan 1, 1992
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Determination Of Classification Parameters For Clay - Bearing And Stratified Rock MassBy Erdal Unal
In underground mining today, safety and economical aspects demand a better understanding of the rock-mass conditions, particularly for design of underground mine openings excavated in weak and stratif
Jan 1, 1990
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Application of Yield-Lok Bolt for Bursting and Convergence Grounds in MinesBy Rocky Wu
Rock bursts are one of the greatest challenges to ground control in the mining industry. With increasing mining depth and mining scale, there are more and more industry requirements on yielding rock s
Jan 1, 2011
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Ground Control Criteria for Coal Reserve Optimization in Multiple-Seam MinesBy Eric Westman
Ground control problems caused by multiple-seam interaction frequently sterilize coal reserves. Interaction mechanisms differ for overmining and undermining and are controlled by mining, spatial. and
Jan 1, 1997
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Tensile roof failure arising from horizontal compressive stress and geological slipsBy Alan Bugden
Goedehoop colliery in South Africa has experienced a number of substantial roof falls in roadways and intersections. Many of these have been associated with geological slips and/or horizontal compress
Jan 1, 2003
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Using The Point Load Test To Determine The Uniaxial Compressive Strength Of Coal Measure Rock (993fe9c2-59a0-4335-9e4c-58da9811402f)By John A. Rusnak
Point load testing is used to determine rock strength indexes in geotechnical practice. The point load test apparatus and procedure enables economical testing of core or lump rock samples in either a
Jan 1, 2000
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Longwall Mining-Induced Abutment Loads and Their Impacts on Pillar and Entry StabilityBy Jinsheng Chen
Longwall mining-induced abutment loads on the surrounding coal pillars can be grouped into two categories in terms of the relative position of the coal pillars and the longwall face. They are the fron
Jan 1, 2002
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Acoustic Scanner Analysis of Borehole Breakout to Define the Stress Field Across Mine Sites in the Sydney and Bowen Basins, AustraliaBy S. MacGregor
The role of horizontal stress, its orientation and magnitude, in defining the behaviour of strata in underground coal mines has been well established. Poor panel layouts have led to gate end stress co
Jan 1, 2002
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Highwall Augering In Ultra-Thick Western Coal Reserves: Unique Geotechnical And Operational ChallengesBy Timothy Ross
The Pittsburg & Midway Coal Mining Co.'s Kemmerer Mine is one of the deepest surface coal operations in the world, with the highwall extending to approximately 1,000 ft above the pit floor. To in
Jan 1, 1999
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Rigid Or Yielding Roof Bolts: At The Face Or Away From The Face (3eff2ffb-d0b3-4171-9439-10f9fdec54f7)By R. D. Lama
The concept of rigid or yielding bolts is discussed based upon support requirements for excavations of equivalent geomechanical behaviour. The concept of equivalent geomechanical behaviour is introduc
Jan 1, 1992
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Longwall Roof Fall Prediction and Shield Support RecommendationsBy Ulrich Langosch
In the 1990s the German mining industry introduced a new generation of shield supports. The new design of support has a maximum load capacity of 10,000 kN, making these units as strong as the shields
Jan 1, 2003
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Ground Control Experiences in a High Horizontal Stress Field at Inland Steel Coal Mine NO. 2,By C. Thomas Blevins
This paper is intended to be a hands on experience account about ground control in a Southern Illinois coal mine. Its aim is to show how a combination of real world mining practices and constraints al
Jan 1, 1984
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A Methodology for Fault Pre-Consolidation prior to Longwall Retreat: A Case Study from Kestrel CoalBy Dion Pastars
Kestrel Coal has undertaken a surface-to-seam consolidation program of faulted ground prior to longwall retreat in the 304 panel. Micro fine cement is used to improve the rock mass quality and the
Jan 1, 2007
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Analysis Of Major Failure Through Integration Of Static And Dynamic Rock Mechanics InvestigationBy K. Y. Haramy
Rock burst and coal mine bump research using static and dynamic rock mechanics instrumentation has been conducted for several decades. Research efforts typically have been conducted using static instr
Jan 1, 1988
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Downhole Overcoring Stress Measurement at a Western Underground Coal MineBy David Conover
Knowledge of the magnitude and direction of the horizontal secondary principal stresses is a critical factor in designing the layout and mining sequence of underground openings. Typically, horizontal
Jan 1, 2004
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Development of a Risk Rating System for Use in Underground Coal MiningBy Johann van Wjk
Mandatory Codes of Practice to Combat Rock Fall Accidents came into force on South African Collieries in 1997. These were drawn up in accordance with guidelines issued by the Chief Inspector of Mines,
Jan 1, 2002
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Estimating Rock Strengths Using Drilling Parameters During Roof Bolting Operations - Progress ReportBy Yi Luo
Accurate mechanical and geological information of the roof strata is vital for roof bolting design in underground mines. In order to obtain such information in a timely manner, a research has been und
Jan 1, 2002
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RQD from the Barrel to the Box: Weatherability May be a Better indicator for Roof Support DesignBy Kot Unrug
For the purposes of underground mine design, twelve cores of the Springfield (V) Coal (Pennsylvanian) roof and floor were retrieved. Each core was photographed, described fresh in the barrel, and the
Jan 1, 2003
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Evaluation Of Subsidence Parameters For Inclined Seams In UK CoalfieldsBy X. L. Yao
This paper analyses the effects of mining extraction geometry (width/depth ratio) and dip of seam on subsidence parameters based on a large Database, containing 120 longwall mining cases all within th
Jan 1, 1990
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Analysis of a Stability Problem in an Underground Coal Mine Due to Floor ConditionsBy M Nombe
Based on the analysis of a case study at POWELTON No.2 MINE, it was determined that mine stability problems had occurred due to floor softening. A fireclay (underclay) layer in the immediate floor was
Jan 1, 2002