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Use Of Automated Resistivity System To Locate Potential Subsidence Areas Over Old MinesBy Richard G. Burdick
The Bureau of Mines', Denver Research Center has been conducting research for the past few years on the use of resistivity methods to locate abandoned mine workings. As this work has progressed,
Jan 1, 1982
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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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Stress Measurements for Safety Decisions in Longwall Coal (4b24fd83-539f-4e52-8928-06b50544afce)By Eric Zahl
Researchers at the Spokane Research Laboratory of the National Institute for Occupational Safety and Health, Spokane, WA, have collaborated with three Western longwall coal mines in an ongoing effort
Jan 1, 2002
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Shield Monitoring To Forecast Severe Face Weightings At The South Bulga Colliery, NSW, AustraliaBy Jim Sandford
The South Bulga Colliery longwall operation, owned and operated by Cyprus Coal Australia. Oakbridge Pty. Ltd., and located near Singleton, NSW, is currently operating under an average 80-ft-thick (24-
Jan 1, 1999
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Continuing Development of Innovative Cable Support SystemsBy John G. Oldsen
Passive cable bolting and active cable trusses have been used in roof support for more than two years Excellent roof control has been experienced by many coal operations. This paper covers the new
Jan 1, 1997
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Utilization Of Polymer Grid Structures In Shield Recovery OperationsBy Brian E. Travis
Recent Developments in the utilization of polymer grid structures for Longwall Shield Recovery operations are discussed. Specifically: various Longwall screen designs and the numerous methods employed
Jan 1, 1993
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Floor Heave Control Outby the Seal Line in No. 11 West Kentucky SeamBy Joel Bradley, Kot Unrug, Kyle Perry, Mark Klimek
"A West Kentucky mine operation in No. 11 seam, encountered floor heave, due to the localized increase of the thickness in the fireclay mine floor. Floor heave has overridden seals installed in two mi
Jan 1, 2015
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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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FDM Prediction Of A Yield Pillar Performance In Conjunction With A Field TrialBy H. Yavuz
A Numerical modelling study using the two dimensional finite difference code "FLAC" was performed for investigating the ability of numerical modelling to predict the performance of yielding pillars. T
Jan 1, 2001
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Controlled Thrust And Torque Placement Of Mechanical Anchor Bolts And Their Relationship To Improved Roof ControlBy Anil Mahyera
Under contract to the Bureau of Mines, a roofbolting machine has been developed which will: control torque on the bolthead to within 4 percent of a set point, control thrust to a low level (150 lbf),
Jan 1, 1981
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Field Measurements Of Overburden And Chain Pillar Response To Longwall Mining (22054dce-c5fa-459f-94f1-b6ef58bd87bf)By Daniel W. H. Su
This paper presents the results of an extensive geomechanical testing and monitoring program conducted at a longwall panel. The field program included the monitoring of roof caving sequence and mechan
Jan 1, 1987
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Field Testing of a Real Time Roof Mapping Drilling Display System in a Limestone MineBy Craig Collins
The objective was to develop a Real Time Drilling Display System for Rotary Roof Bolting using Analyzing Software to display mapped holes as they are being drilled in real time. The Analyzing Softw
Jan 1, 2004
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Mechanism of Strata Pressure Characteristics and Its Control Techniques in Faulted Areas Subjected to Longwall MiningBy Ke Yang
"Engineering practices have shown that the skip-fault longwall mining is frequently used when faults with offsets larger than 1 Om are present. Since the skip-fault longwall mining not only reduces th
Jan 1, 2016
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Surface Subsidence Due to the Combined Effects of Underground Coal Mining and Groundwater WithdrawalBy Shu Cheng
Abstract: Based on the consolidation theory of soil dewatering and land subsidence prediction methods in soil mechanics, preliminary analysis of surface subsidence and movement due to groundwater with
Jan 1, 2002
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Weak Claystone Floors And Their Implications To Pillar Design And Settlement (e297de16-ba6b-46bd-8383-22a15beca7b5)By Ross W. Seedsman
The in situ behaviour of claystone floors associated with the Wallarah, Great Northern and Fassifem Seams has been studied using a comprehensive suite of stress and displacement monitors. The instrume
Jan 1, 1992
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Application of Stress, Geologic, and Support Design System (Sgssm) to Ground Control for Mine Slope EntriesBy John Stankus
Accurate evaluation of stress and geological conditions is critical to ground control design in underground openings. For a mine slope entry, the problem becomes more complicated because a slope trans
Jan 1, 2011
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The Development and Planning of Multiple Level Underground Limestone MinesBy Bruce W. King, David A. Newman
"Underground mines have always been an integral part of the limestone industry. However, beginning in the 1990s, the number of underground limestone mines has increased for many reasons including• Str
Jan 1, 2016
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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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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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A Study of Potential Fault Reactivation and Water Intrusion at a Longwall Coal Mine in AppalachiaBy Francis Kendorski
A longwall coal mine in Appalachia about 1,500 ft deep encountered a fault while developing a new longwall panel. The fault extended from mining depth to the surface near a secondary road and drainage
Jan 1, 2003