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Geotechnical Mine Design Of The Foidel Creek MineBy H. N. Maleki
The results of five years of geotechnical investigations are presented to develop productive and stable longwall layouts for the Foidel Creek Mine. The program was initiated during the pre-mining stag
Jan 1, 1988
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Behavioral Aspects of Roof/Rib Injuries--Implications for Training Utilizing Stereoscopic PhotographyBy Edward A. Barrett
A significant number of injuries resulting from fa118 of roof and rib may be avoided by modifying the reactive behavior of miners as they encounter potentially hazardous ground conditions. In 1984-85,
Jan 1, 1986
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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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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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Integrating Ground Control And Mine Site Data Through A Geographic Information SystemBy Douglas C. Peters
Part of the ground control research at the U.S. Bureau of Mines is involved with improving ground control data collection and analysis methods. A geographic information system (GIs) is being used with
Jan 1, 1990
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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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Assessment Of Wood And Alternative Materials For Supplemental Roof Support ConstructionBy Thomas M. Barczak
The engineering of a support system is driven largely by economics. The goal is to provide effective support at minimal cost. For this reason, wood has been extensively used as a support material for
Jan 1, 1994
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Design Trade-Off For Angle Roof DrillingBy James H. Fletcher
Much data and experience has been accumulated, especially in the last 5 or 6 years, to show that modern roof trusses, both of the Birmingham type and the bolt-and-channel type, perform well to support
Jan 1, 1982
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Study on the Modified Model of Probability Integra MethodBy Zhang Hongzhen
The fast convergence of boundary is a major problem of probability integral method, especially for the prediction of mining under thick alluvium, abandoned mine goaf, etc. To solve this problem and im
Jan 1, 2014
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Evaluation Of Surface Subsidence Potential Along A Pipeline Due To Abandoned Coal Mine WorksBy Thomas L. Vandergrift
With the inevitable expansion of homes, businesses, and infrastructure in coal mining regions, the potential for future subsidence above abandoned mines is of increasing concern. Of particular concern
Jan 1, 2000
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Test Method for Assessing Water Degradation Potential of Coal Measure Rocks for Analyses of Floor, Roof, and RibsBy G. J. Hasenfus
There are no known published methods of estimating the degradation of coal measure rocks by water that are simple and efficient, yet still provide a quantitative, meaningful value for assessing the st
Jan 1, 2005
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Evaluation Of Mobile Roof Support TechnologiesBy Hamid Maleki
This study presents a historic overview of the role of mobile roof support (MRS) technologies in improving stability and worker safety and presents the results of recent field evaluations of the MRS l
Jan 1, 2001
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Progression of Longwall Gateroad Support as Conditions Change at Lodestar Energy's Baker MineBy David Miller
Longwall gateroad support can be supplied by a variety of methods. The system of support also needs to be flexible as conditions change. This is especially true in the complex geological conditions of
Jan 1, 1998
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Scale Model Studies To Investigate The Effects Of Various Stressfields On The Stability Of Pillars Between Mine Roadways (359d84ec-978c-4bf2-a810-72bdf384bacc)By K. Goshtasbi Goharizi
This paper discusses experimental results of physical scale models employed to study the stability of a pillar between rectangular roadways. A programme of laboratory investigations utilising a bi-axi
Jan 1, 1992
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Cross?Correlation Detection of Seismic Events Related to the Crandall Canyon Mine CollapseBy Tex M. Kubacki
On August 6, 2007, the Crandall Canyon Mine experienced a collapse which trapped six mine-workers. An MW 4.1 seismic event was recorded in conjunction with this collapse. An additional 54 seismic even
Jan 1, 2013
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Tensioned Cable Bolts As Primary Support: UpdateBy John C. Stankus
At the 19th International Conference on Ground Control in Mining, a paper was presented detailing new types of Jennmar INSTáL tensionable cable bolts (Stankus and Taylor, 2000). Since that time, signi
Jan 1, 2001
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Calibration Of The Analysis Of Longwall Pillar Stability (ALPS) Chain Pillar Design Methodology For Australian ConditionsBy Mark Colwell
This paper summarizes the results of a research project whose goal was to provide the Australian coal industry with a chain pillar design methodology readily usable by colliery staff. The project was
Jan 1, 1999
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Stability of Backfilled Cross-panel Entries During Longwall MiningBy Brad Seymour
In cooperation with Cyprus Twentymile Coal Co., researchers from the National Institute for Occupational Safety and Health (NIOSI-I), Spokane Research Laboratory, conducted a study at the Foidel Creek
Jan 1, 1998
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A Linear Coal Pillar Strength Formula for South African CoalBy Nielen van der Merwe
The data base of failed pillar cases as used by Salamon and Munro (1967) in their original analysis to determine the strength of coal pillars empirically, has been updated for this study. It is shown
Jan 1, 2002
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Development and Application of Impact-Resistant Lagging for Steel Sets Installed at Underground Roof Fall AreasBy Kevin Jinrong Ma
Underground mines often experience roof falls in entries, crosscuts, and intersections of active mining sections, main travel ways, and belt entries. Roof fall heights greater than 20 ft (6 m) make re
Jan 1, 2011