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Monitoring Indices For The Support And Surrounding Strata System On A Longwall Face (d3af3b40-bd2b-43ab-adc6-f4c445bf5433)By Ming-Gao Qian
How to monitor and control the support and surrounding strata system on a longwall face effectively is one of the major research problems in ground control. Based on observations on movements of the s
Jan 1, 1992
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A Hydrogeomechanical Study Of Overburden Aquifer Response To Longwall MiningBy G. J. Hasenfus
This paper presents the results of an extensive hydrological and geomechanical monitoring program which Gas conducted at a longwall coal mine in W. Va. The field program included monitoring of groundw
Jan 1, 1988
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Application Of A Polymer-Based Sealing Material To Prevent Roof From WeatheringBy Peter Zhang
The immediate roof at the test site consisted of laminated clay shale that is likely to be susceptible to weathering. With seasonal dry-wet cycles in the mine ventilation air, the roof in the intake
Jan 1, 2009
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Pillar Design Considering the Plastic Behavior of the Coal SeamBy Andre Zingano
The variation in pillar behavior at underground coal mines working in the Bonito coal seam is observed in both research and mining company case studies. There is no consistency in pillar behavior, as
Jan 1, 2012
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Mine Stability Evaluation From Microseismic Activity (5cc6a13d-fd4e-4c74-a7d1-2213b7f2a1da)By Brian R. A. Wood
Any defect activity resulting from an applied stimulus on a structure will generate a stress wave which travels in the medium under the laws of acoustics, thus the name of acoustic emission (AE). AE t
Jan 1, 1992
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Design And Control Of Working Support In Polish Coal Mines Based On Three-Dimensional Numerical ModelingBy Slawomir Bock
One of the fundamental issues having a great influence on the safety of operations performed in underground mines is the support of workings which should assure their stability in a given geological s
Jan 1, 2009
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System behavior analysis of the ground movement around a longwallBy Jian Wu
In this paper, the surrounding rocks and the supports in a longwall are taken as an integral, i.e. a system. The structural characteristics and behavior of the system are discussed based on in-situ ob
Jan 1, 1989
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Analytical Investigation of Shaft Damages at West Elk MineBy Tim Ross
Several shear failures were observed in Shaft #1 at the Mountain Coal Company, LLC, West Elk Mine, after mining longwall Panel 23, 1,100 ft to the east of Shaft #1. It was speculated that this shear
Jan 1, 2006
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Calcium Aluminate Kiders in Hard Rock and Coal MiningBy Bernard Woolley
The history of the use of calcium aluminates in mining is discussed including a review of very rapid hardening concretes, anchoring using cement capsules and pumped ground control systems. Specific re
Jan 1, 1997
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Load Transfer Distance Calibration of a Coal Panel Scale Model: a Case StudyBy Mark K. Larson
Calibration of LaModel for deep coal mines begins with adjustment of overburden stiffness for load transfer distance. This calibration determines whether mining induced stresses are concentrated in th
Jan 1, 2012
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Numerical Modeling for Roadway Support Systems ? A Comparison for Single and Multiple Seam MiningBy Axel Studeny
Geomechanical-numerical methods are an established tool for planning of underground excavations worldwide. By describing the interaction between heterogeneous layered strata and support elements it is
Jan 1, 2007
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Ground Movements Associated With Pillar Extraction Coal Mining In Northern West Virginia (38f818ad-9d3b-4ecb-b624-667cef121309)By Robert W. Bruhn
An investigation was male of ground response to pillar retreat mining in a 1.7 meter thick seam at 108 meter depth at a site in northern West Virginia. This paper describes mining-related stress chang
Jan 1, 1984
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Application of the Coal Mine Roof Rating, Derived from Drill Core, in the Roof Support Design of a Coal Belt Conveyor TunnelBy John Rusnak
The Coal Mine Roof Rating (CMRR) is a practical rock mass classification system for use in design of mine openings. Data can be obtained for this purpose from exploration drill cores if simple geotech
Jan 1, 1998
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The Unpredictable Life Cycle of a Coal Pillar (b2bcadc5-82a3-454e-be3a-6b79e9867244)By Stephen Tadolini
A unique circumstance created by monitoring a pre-driven longwall recovery room permitted measuring the stresses of a coal pillar throughout its entire life cycle in less than a week. A fender pillar
Jan 1, 2007
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Coal Bumps in an Eastern Kentucky Coal Mine 1989 to 1997By John Hoelle
Coal mines in southern West Virginia, south-western Virginia and eastern Kentucky have experienced coal bumps at least since 1933. Most of the bumps have occurred due to high cover, strong roof and f
Jan 1, 2008
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An Application Of Fem Back Analysis Method To Mine RoadwayKnowledge of initial ground pressures or in-situ stresses and mechanical properties and geological conditions is of great importance in drivage and maintenance of a mine roadway. Field measurements
Jan 1, 1990
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A Case Study of Longwall Roof-Supports InteractionBy Y. H. Wang
During the last two decades many research projects were conducted to study the load requirements for the powered supported longwall faces (1-6). Significant results had been achieved by these research
Jan 1, 1986
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An Approach to Predict Rock Mass Deformations in Three Dimensions for a Part of an Open Pit Mine and Comparison with Field Deformation Monitoring DataBy Pinnaduwa H. S. W. Kulatilake, Biao Shu
The intact rock properties and discontinuity properties for both Devonian Rodeo Creek (DRC) and Devonian Papovich (DP) rock formations that exist in the selected open-pit mine were determined from tes
Jan 1, 2015
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Horizontal Stress and Coal Mines: Twenty-Five Years of Experience and PerspectiveBy G. J. Hasenfus
Although theoretical and conceptual knowledge regarding the impact of horizontal stress on underground coal mining excavations have existed since at least the mid-1900s, it wasn?t until the late 1970?
Jan 1, 2006
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J?Crete: An Engineered Cementitious Composite Rock CoatingBy Alan A. Campoli
The mining industry has long been searching for an effective structural application that prevents weathering and falls of loose rock, debris, and sediment. J-Crete is a fiber-reinforced, engineered, c
Jan 1, 2012