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  • SME-ICGCM
    Strata Support Interaction On A Powered Support Longwall Face Under A Massive Dolerite Sill - A Study (d30e090b-e4dc-4c93-b107-3cdd31db016b)

    Design and selection of support systems for longwall faces call for in-depth knowledge of strata mechanics and in particular of strata-support interactions. The paper presents the results of field inv

    Jan 1, 1992

  • SME-ICGCM
    Roklok Polyurethane Binder: A Chemical Injection System For The Consolidation Of Severe In-Mine Ground Conditions

    By Kirk W. McCabe

    RokLok binder is a two-component polyurethane system consisting of a polymeric isocyanate (Component A) and a polyol resin (Component B). The two chemicals are mixed and injected into the mine rock un

    Jan 1, 1981

  • SME-ICGCM
    Roof Sounding Device - A Loose Rock Detector

    By Richard C. Repsher

    The U.S. Bureau of Mines has developed a method and device designed to detect lose rock material in underground mines. The technology is designed to be an aid to mine workers in detecting hazardous ro

    Jan 1, 1990

  • SME-ICGCM
    Ground Deformation In The Case Of Underground Mining Of Thick And Dip Coal Seams In The Jiu Valley Basin

    By Gheorghe Oncioiu

    The phenomena developed on the influence of thick coal seam no.3 mining, by horizontal slices and rocks caving roof control, in the Jiu Valley coal basin, are very complex. By analyzing the influence

    Jan 1, 1999

  • SME-ICGCM
    Prediction Of Shearer Cutting Performance (2d8ef98a-f84a-4c60-8ac8-2edff3e8f14f)

    By D. L. Price

    This paper presents a method of measuring field power consumption of shearers and deriving specific energy consumption versus shearer haulage speed performance curves. A description of a computer prog

    Jan 1, 1992

  • SME-ICGCM
    Microseismic Monitoring of Mountain Bumps and Bounces: A Case Study

    By J. L. Condon

    The Bureau of Mines, through in-house and contract research, monitored mountain bump-prone areas of the Olga #2 Mine, near Welch, WV, using microseismic techniques for 15 months during 1985 and 1986.

    Jan 1, 1987

  • SME-ICGCM
    Regional Horizontal Surface Displacements Due To Mining Beneath Severe Surface Topography

    By Bruce K. Hebblewhite

    Tower Colliery is a longwall mine operated by BHP Coal Illawarra Collieries, Southwest of Sydney, Australia It mines the Bulli Seam at a depth of approximately 450m. The surface topography overlying t

    Jan 1, 2000

  • SME-ICGCM
    Gateroad Pillar Extraction Experience at Jim Walter Resources

    By Gregory Hendon

    Jim Walter Resources, Inc. (JWR), has successfully longwall mined for many years at depths ranging from 1200'-2500'. However, full pillar extraction has proven difficult and generally econom

    Jan 1, 1998

  • SME-ICGCM
    Constraint Is The Prime Variable In Pillar Strength

    By Clarence O. Babcock

    Since Vicat in 1833, the width to height ratio of a mine pillar has been taken as the fundamental variable in pillar design. From work in the laboratory by many investigators testing rock, Coal and co

    Jan 1, 1984

  • SME-ICGCM
    Underground High Resolution Seismic Method As A Low Cost Alternative For Mapping Sandstone Replacement Channels In Coal Mines

    By Rene Rodriguez

    Sandstone paleo-channels encountered during coal mining operation can significantly slow down the advance in mining, and often completely shut-down coal mine production, with consequent extensive econ

    Jan 1, 1994

  • SME-ICGCM
    Modern Shield Technology: Better Than Ever But Still Not Perfect

    By Thomas M. Barczak

    A survey of the longwall industry was conducted to examine the performance of modern shield technology. The results of this survey indicate that state-of-the-art shields perform better and last longer

    Jan 1, 1999

  • SME-ICGCM
    Development and Application of Impact-Resistant Lagging for Steel Sets Installed at Underground Roof Fall Areas

    By 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

  • SME-ICGCM
    Use Of Automated Resistivity System To Locate Potential Subsidence Areas Over Old Mines

    By 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

  • SME-ICGCM
    Determination Of The Stopline Subsidence Profile Of Phalen 2 West Panel From Within A Near Horizontal Borehole Over The Panel Stopline

    By William D. Gallant

    This paper presents the results of a joint cooperative research project between the CANMET Cape Breton Coal Research Laboratory and the Cape Breton Development Corporation to observe the subsidence pr

    Jan 1, 1990

  • SME-ICGCM
    A Comparison Of Support Reactions To Retreat Longwall Front Abutment For Two Different Gateroad Support Techniques

    By Gary R. Corbett

    The federally owned Cape Breton Development Corporation (CBDC) mines approximately 2.5-3.0 Mt of coal per annum from its Phalen Colliery. As part of an ongoing process to become more commercially viab

    Jan 1, 1993

  • SME-ICGCM
    The Utilization Of Rockbolting Technology And Monitoring Techniques In The German Coal Fields

    By Thomas Lautsch

    After a short description of geology and gateroad roof support technology in the German coalfields the development of roof bolting as primary roof support is presented. Based on geotechnical parame

    Jan 1, 2000

  • SME-ICGCM
    Development Of A Subsidence Database And Determination Of Subsidence Parameters

    By Syd S. Peng

    A total of 209 cases of subsidence data over longwall panels in 16 US coal seems have been collected and built into a subsidence database. The database is developed under MS Windows environment. It us

    Jan 1, 1995

  • SME-ICGCM
    Numerical Modeling of the Gob Loading Mechanism in Longwall Coal Mines

    By Khaled Morsy

    Longwall mining is one of the most widely practiced underground coal mining method. The behavior of the longwall gob is very critical in the understanding of the complex ground response to longwall mi

    Jan 1, 2002

  • SME-ICGCM
    Geological Conditions At Continuous Miner Sections; Examples From Marrowbone Development Company, Mingo County, West Virginia

    By J. Marc Coolen

    Marrowbone Development Company operates a large drift mining complex in the central Appalachian coal field. In 1997, five continuous miner supersections produced close to 9 million tons of raw plant f

    Jan 1, 1999

  • SME-ICGCM
    Computer Modelling And In Situ Instrumentation Techniques: A Quantitative Approach To Scientific Mine Design

    By Bruce H. Gardner

    This paper describes the application procedure of the Stress Control mine design method. This procedure has evolved over the past 20 years of the practice of this Method in trona, potash, salt, and, m

    Jan 1, 1984