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Method Of Selecting Suitable Types Of Powered Supports At Longwall FacesBy S. M. Hsiung
A model (support selection model) for the selection of suitable types of powered supports under various geological conditions is proposed. This model is developed by evaluating the support, performanc
Jan 1, 1988
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Preventing Falls Of Ground In Coal Mines With Exceptionally Low-Strength Roof: Two Case StudiesBy Christopher Mark
Mines with exceptionally low-strength roof (UCS <3,500 psi and CMRR <40) are much more likely to struggle with roof falls than other mines. Weak-roof is a particular problem for many room and pillar m
Jan 1, 2004
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Finite Element Modeling Of Subsidence Induced By Underground Coal Mining: The Influence Of Material Nonlinearity And Shearing Along Existing Planes Of WeaknessBy Daniel W. H. Su
Surface subsidence induced by multiple-panel coal extraction was calculated with finite element stress analysis. The use of nonlinear material behavior and GAP elements, which provide a realistic repr
Jan 1, 1990
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Prediction Of Rock Cutting Performance Using Fracture Mechanics Principles - A Review (0b1a12ed-9606-4d46-b68d-eea006d52e76)By Gexin Sun
This paper overviews the recent research progress in predicting cutting performance using fracture mechanics principles. It is emphasised that rock fragmentation due to cutting is mainly a process of
Jan 1, 1992
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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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Roof Behavior In South African Coal Room And Pillar PanelsBy Bruce W. Jack
An extensive underground roof-monitoring program was conducted in order to determine the roof strata behavior under various conditions. In total 29 sites at 5 different collieries were monitored using
Jan 1, 2000
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A Simplified Two-Dimensional Analysis Of The Roof-Pillar-Floor Interaction Problem In Coal MinesA two-dimensional time-dependent analysis of a overburden-coal pillar-weak floor strata interaction problem is presented as a beam model consisting of a composite roof beam resting on multiple elastic
Jan 1, 1988
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Horizontal Stress: The Root Of All Evil?By J. Nielen van der Merwe
The effects of horizontal stress in coal mine roofs in South Africa did not receive the attention it deserved for several years, but now there is a danger that it may be over emphasized. A number of p
Jan 1, 2000
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An Engineering Analysis Of "Squeeze" Failure Of Pillars In The Pittsburgh Coal BedBy George Mishra
In mid-1979, J&L Steel Corporation experienced rapid failure of pillars after only two weeks' operation with a combination of full retreat and partial mining in the 154 Road Section of its Nemaco
Jan 1, 1981
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Geotechnical Aspects of Subsidence over Room and Pillar Mines in IllinoisBy Gennaro G. Marino
Site conditions at several shallow room and pillar mines in Illinois are described and compared with the charac¬teristics of the subsidence profiles at the ground surface. The shape and magnitude of t
Jan 1, 1984
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Ground Control In Multiple Seam MiningBy Robert A. Stansbury
The No. 14 Mine of United States Steel Corp- oration is located at Munson, West Virginia, in &Dowell County. The mine was originally assigned 7,530 acres of Pocahontas 3, 4 and 5 Seams. Production beg
Jan 1, 1981
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Formation of Face Headings Using Stress Relief at Asfordby MineBy John Cassie
The condition of roadways in the Deep Main seam at Asfordby mine, operated by RJB Mining (UK) Ltd, is strongly dependant on drivage direction relative to the maximum horizontal stress. The mine is la
Jan 1, 1997
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Roof Bolt Response To Shear Stress: Laboratory Analysis (01deebbf-0c9c-422b-b7e0-1ccfd8e161d8)By Ed Mchugh
Recent studies by researchers from the National Institute for Occupational Safety and Health indicate that shear loading contributes significantly to failure of bolts used for rock reinforcement in co
Jan 1, 1999
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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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Massive Pillar Failure--Two Case StudiesBy David H. Tang
Similar massive pillar failures were observed in two underground coal mines with different configurations of mine workings and overburden depths. Finite element models were used to analyze the causes
Jan 1, 1984
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Performance of Various Standing and Cribless Tailgate Support Configurations in a Large Eastern Coal MineBy Gregory M. Molinda
Difficult mining conditions in deep western U.S. Iongwalls have necessitated the use of novel tailgate support systems. Extreme ground movement in these yielding gate systems has caused operators to u
Jan 1, 1997
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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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Early Warning of Longwall Weighting Events and Roof Cavities Using Lva SoftwareBy David I. Hoyer
It is shown that by monitoring longwall leg pressures in real time, warning can be given for significant weighting events and the formation of roof instabilities, such as roof cavities, several hours
Jan 1, 2011
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The NIOSH Shield Hydraulics Inspection and Evaluation of Leg Data (Shield) Computer Program (7f22bea3-620b-4bd0-a4b9-04ee2b01eea7)By Thomas Barczak
Longwall shields provide essential ground control in Iongwall mining, yet a high percentage of shields are operating at less than peak capacity and many at well below the rated support capacity due to
Jan 1, 2002
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Pressure Distribution Of 2-Leg Shield Supports (fb20894a-e0d3-49e8-b331-69176f4a54a3)By Rao Pothini
Measurement of pressure distribution under the base plate of the Hemscheidt 2-leg 800-ton shield was performed underground for two shifts using 12 pressure cells installed in two rows, one each under
Jan 1, 1992