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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 Novel and Effective Method to Develop Tension in a Roof BoltBy Phillip E. Gramlich
Through extensive practical experience and multiple studies, tensioned roof control systems have proven beneficial in difficult mining conditions. Due to increased mining of less desirable seams, ten
Jan 1, 2014
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Development of A Yielding Steel PostBy John P. Dunford
Ground support continues to be the most important safety consideration in underground mining. The Bureau of Mines has developed a yielding steel post with a capacity of 45 tons and b c1osure allowance
Jan 1, 1986
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Variation of Horizontal Stresses and Strains in Mines in Bedded Deposits in the Eastern and Midwestern United States (18e10a78-83b8-48d9-ab61-d01619f77fb4)By Dennis Dolinar
In general, the direction of the maximum horizontal stress in the eastern United States is fairly well defined. However, the variation of the magnitudes of the horizontal stresses is not very well und
Jan 1, 2003
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The Technical Progress and Problems to Be Solved of Thick Coal Seam Mining in ChinaBy Jiacheng Wang
The current state of thick seam coal mining methods is illustrated in three typical cases of thick seam longwall mining, each pointing out the outstanding achievements in top-coal caving mining and la
Jan 1, 2011
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Problems in "Void" Detection in Coal Mine Water HazardsBy Francis Kendorski
One of the most dangerous events in underground coal mining is unexpectedly encountering water inrushes from undetected abandoned mines in the same seam. The surest and most confident method is probe
Jan 1, 2004
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Introduction of a New Superior Coating on Ground Support ProductsBy Renn Oler
Corrosion can often cause significant strength reduction and failure of steel rockbolts, thus demanding continuous rehabilitation and posing challenges to underground mines in maintaining long term gr
Jan 1, 2014
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Roadway Supporting Technology Applied to Very Soft Coal Seam at Yanlong Mining Area in ChinaBy Sheng Zhang
The compressive strength of coal in Yanlong mine area of China is less than 3 MPa. Basically, it is powdery. The roof and floor rocks are mudstone. Therefore this coal seam is a typical ?three soft? c
Jan 1, 2013
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Leached Salt Cavern Design Using a Fracture Criterion for Rock Salt (81ddea75-bb8e-4c9d-8bc7-d9299dc4873e)By Dale S. Preece
In 1975 Congress passed the Energy Conservation Act to establish a U. S. Strategic Petroleum Reserve (SPR) with a capacity of 750 million barrels of crude oil. The most economic storage medium was det
Jan 1, 1984
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A Liquid Settlement System for Measuring Roof Sag During Development Mining - A Comparison Between Place Change Mining and a Miner?BolterBy Andy L. Shaffer
A novel liquid settlement system (LSS) was installed in advance of mining at a western United States (U.S.) longwall mine to measure total roof sag from the time of cutting to days after mining during
Jan 1, 2014
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Stooping Low Safety Factor Pillars At Goedehoop CollieryBy Gift Makusha
The Witbank Coalfield in South Africa contains up to five economically viable coal seams. These seams have been mined continuously for over 100 years and the reserve in now becoming depleted. The norm
Jan 1, 2003
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The Impact Factors of Overburden Movement in Longwall Mining of Shallow Coal SeamsBy Yang Li
For the study of overburden movement in longwall mining of shallow coal seams, most scholars merely consider the thickness of bedrock and top soils. In this paper, the overburden movement in longwall
Jan 1, 2014
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Validation of Overburden Failure Zone in Complex Extra Thick Coal Seam by EH?4 Magnetotelluric MethodBy Hai Rong
EH-4 Electrical conductivity imaging system has been playing an important role in prospecting, looking for water resource, and determining coal mine gob boundary by virtue of its significant advantage
Jan 1, 2014
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Longwall Shield Recovery, Using Phenolic Foam Injection for Gob Control As An Alternative to Recovery MeshBy James D. Pile
Following a methane ignition in the active panel of a longwall coal mine, the affected panel was successfully isolated from the rest of the mine. This allowed for the remainder of the mine to return t
Jan 1, 2013
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Axial Performance of a Modified Fully Grouted Cable Bolt Tested with a New Laboratory Short Encapsulation Pull TestBy Paul C. Hagan, Jianhang Chen, Serkan Saydam
"Modified cable bolts are commonly used in underground mines due to their superior performance in preventing bed separation when compared with plain strands. To better test the axial performance of a
Jan 1, 2015
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Photogrammetric Monitoring of Rock Mass Behavior in Deep Vein MiningBy Donovan J. Benton
Photogrammetric methods are advancing rapidly and show considerable promise as a ground control research tool. The ability to quickly capture three-dimensional geometry, especially changes in geometr
Jan 1, 2014
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Computerised Subsidence And Displacement Prediction Using Influence Function MethodsA computerised influence function approach to subsidence and horizontal displacement prediction is described, with particular emphasis being placed on the applicability of the method to irregular- sha
Jan 1, 1988
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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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Case Studies Of Depillaring Under Special Strata And Mining ConditionsBy P. R. Sheorey
Four case studies of special geomining conditions from Indian coalfields are discuss- ed. These cases relate to (a) pillar extraction in two seams simultaneously under a difficult roof (Satpura I and
Jan 1, 1988
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International Conference On Ground Control In Mining Design Of Three-Entry System For Super Longwall PanelsBy J. D. Cole
In order to reduce the number of longwall face moves and to increase the rate of gateroad construction, super longwall panels, 1000 feet wide and 12000 to 14000 feet long, are planned for Wolf Creek C
Jan 1, 1990