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  • SME-ICGCM
    Applications Of Cement Grouting Method For Controlling Weak Strata

    By Herryal Z. Anwar

    In recent years, many both mining and civil engineering projects are developed in the area which may be categorized unstable, such as fractured and jointed rocks or "water sensitive rocks". For exampl

    Jan 1, 2000

  • SME-ICGCM
    Analysis of Cutter Roof Using the Boundary Element Method

    By Mikko Ahola

    This paper describes recent innovative analyses conducted by the Bureau of Mines to demonstrate the application of the boundary-element method in evaluating the effectiveness of caving chambers or sac

    Jan 1, 1987

  • 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
    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
    Design Of Roadway Support Using A Strain Softening Model

    By Jamal Hematian

    Understanding the behaviour of rocks in a high horizontal stress field, such as that in Australia, is critical when analysing the stability of underground structures. This paper addresses the signific

    Jan 1, 1994

  • SME-ICGCM
    Field Test with Strain-gauged Friction Bolts at the Gold Hunter Mine, Mullan, Idaho, USA (f62ddf9f-aabd-4681-8d92-4a50602e035c)

    By Jeffrey Johnson

    To measure the loading behavior of friction bolts, researchers at the Spokane Research Laboratory of the National Institute for Occupational Safety and Health (NIOSH) installed strain gauges on the in

    Jan 1, 2003

  • 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
    Experience With The Boundary Element Method Of Numerical Modeling As A Tool To Resolve Complex Ground Control Problems

    By George J. Karabin

    The Roof Control Division of the Pittsburgh Safety and Health Technology Center, MS HA, is routinely involved in the evaluation of ground conditions in underground coal mines. Assessing the stability

    Jan 1, 1994

  • SME-ICGCM
    A Comparison Of Overburden Response Due To Longwall Mining

    By David K. Ingram

    The objective of this U.S. Bureau of Mines (USBM) investigation was to characterize overburden response due to longwall mining. Subsurface strata and surface deformations were monitored at two sites i

    Jan 1, 1994

  • SME-ICGCM
    Interaction Between Roof And Support On Longwall Faces With Particular Reference To Support Resistance

    The objective of extensive underground experimentation on three longwall coal faces was to improve the stability of mechanised longwall faces through investigation of the relations between support res

    Jan 1, 1984

  • SME-ICGCM
    SOMA: A New Method to Calculate the Operative Stress Field: Results from the Laurel Mountain Mine, Russell Co., Virginia

    By Craig Byington

    The stress-field orientation mapping and analysis (SOMA) technique for determining the operative stress field near mine workings and its relationship to various fracture sets is described using Dicken

    Jan 1, 2004

  • SME-ICGCM
    Violent Coal Pillar Collapse -A Case Study

    By André Zingano

    Pillar collapses have been studied for several years and can be classified into two types: nonviolent squeeze or violent pillar collapse, i.e., controlled or uncontrolled pillar collapse. Underground

    Jan 1, 2004

  • SME-ICGCM
    Application Of Mechanical And Groundwater-Flow Models To Predict The Hydrogeologic Effects Of Longwall Subsidence - A Case Study

    By Danny J. Van Roosendaal

    An investigation was undertaken to determine hydrogeological effects of subsidence over a longwall coal mine in the Illinois Basin. At this mine, approximately 200 ft of bedrock overburden is overlain

    Jan 1, 1995

  • 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
    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
    Seismic Events Due To Underground Mining Activities

    By R. Fritschen

    In order to investigate locations, source parameters, and source mechanisms of mining induced seismic events, a local network of seismic stations was installed at a coal mine in the eastern part of th

    Jan 1, 1999

  • 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
    Analyses of Valley Fill Slope Stability - Three Case Studies

    By Shiva P. B. Kolli

    Surface mining of multiple scams by mountaintop mining methodology is complex in the Appalachian region of West Virginia. Excess spoil from the removal of overburden and interburden is disposed in the

    Jan 1, 2001

  • 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
    Gob Canopy Roof Support for Difficult Natural Conditions

    By Jay Hilary Kelley

    This paper proposes a modification of longwall roof support to meet new difficult mining conditions that are anticipated in the future. A gob canopy is a movable appendage attached on the rear of a lo

    Jan 1, 1997