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  • SME-ICGCM
    Supercomputer Assisted Three-Dimensional Finite Element Analysis Of A Longwall Panel

    By Duk-Won Park

    The excavation of a longwall panel causes a continuous stress redistribution in the surrounding strata for every face advancement. The understanding of the behavior of rock to high level of stresses i

    Jan 1, 1989

  • SME-ICGCM
    Roof Screening: Best Practices and Roof Bolting Machines (e5909744-6953-4a41-b02f-21226966b63f)

    By Susan Robertson

    Many injuries are caused each year by rock falls in coal mines. Most of these injuries are not caused by major roof collapses, but from falls of smaller rocks from the immediate top or roof skin. Vari

    Jan 1, 2002

  • SME-ICGCM
    Causes of Massive Directional Roof Falls in Room and Pillar Mines - Two Case Studies

    By S. S. Peng

    In recent years many roof falls have been conveniently attributed to the adverse existence of a high horizontal stress. The normal practice of not conducting a follow-up study in a roof fall investiga

    Jan 1, 1999

  • SME-ICGCM
    Alternatives For Controlling Cutter Roof In Coal Mines

    By Nicholas P. Kripakov

    The unpredictable massive collapse of roof in openings developed under apparently safe and stable roof conditions in coal mines of the United States has been of much concern for many years. One type o

    Jan 1, 1982

  • SME-ICGCM
    Ground Control Hazard Analysis In Multi-Seem Mining

    By R. Fraher

    Hazard analysis utilizes interaction mechanisms in combination with geologic, structural and mining conditions to delineate areas of potential damage in seams subject to interaction. Using characteriz

    Jan 1, 1992

  • SME-ICGCM
    Investigations Of Underground Coal Mine Bursts

    By K. Haramy

    Coal mine bursts or bumps involve the violent, rapid failure of coal and rock in or around a mine excavation. Failure is normally associated with high stress and brittle or brittle-elastic materials;

    Jan 1, 1984

  • SME-ICGCM
    The Application Of Rock Mass Classification Principles To Coal Mine Design In UK Conditions

    By David J. Reddish

    Longwall systems are inflexible in layout, intolerant of disruption and represent a substantial investment. It is therefore essential drat all understanding of the likely strata behaviour and support

    Jan 1, 2000

  • SME-ICGCM
    The Effectiveness Of Interpanel Pillars In The Control Of Surface Subsidence (ef7cc44b-3192-4f5f-a75c-62563d519797)

    By Laxminarayan Holla

    There exist many formulae for designing coal pillars. However, when applied to a given set of mining parameters, they lead to different pillar sizes and factors of safety. From the subsidence point of

    Jan 1, 1992

  • SME-ICGCM
    Assessment of the Dynamic Loads Effect on Underground Mines Supports

    By Kazem Oraee-Mirzamani

    Blasting operations generate seismic effects in underground mines. These effects apply additional dynamic loads on the support system, which should bear both static and dynamic loads. Static loads are

    Jan 1, 2011

  • SME-ICGCM
    Stability Evaluation Of Alternative Designs Of Drift-And-Fill Stoping In Zhaoyuan Gold Mine, P. R. China

    By Xianming Zhou

    Mining economics is such that too conservative in safety will result in a considerable penalty in mining cost. However, initial planning and design of a mining project often must be done without compl

    Jan 1, 1989

  • SME-ICGCM
    Numerical Modeling of the U1A Complex at the Nevada Test Site: Model Development and Comparison of Different Drift Mining Options (9c46cc37-c6f9-43fc-b6b3-b63cc79f203c)

    By R. Karl Zipf

    Stress analysis programs such as MULSIM/NL, LAMODEL, MinSim 2000, and EXAMINE TAB are used in the mining industry to analyze stresses and displacements in coal mines, platinum mines, gold reefs, and t

    Jan 1, 2003

  • SME-ICGCM
    Study on Eco-Friendly Underground Mining System for Ultra-Thick Coal Seams in Thailand

    By Takashi Sasaoka

    EGAT Mae Moh Lignite Mine in Thailand produces about 16 million tons of lignite annually from open-cut mining. The coal is used to generate 2,400 MW of electricity. In the near future, however, the co

    Jan 1, 2011

  • SME-ICGCM
    Calibrating LaModel for Subsidence

    By Keith A. Heasley, Jian Yang

    "LaModel uses a laminated overburden boundary-element model and can calculate not only seam-level stresses and displacements but also surface subsidence for thin tabular deposit such as coal seams (He

    Jan 1, 2016

  • SME-ICGCM
    Rock Mechanics and the Analysis of Underground Mine Stability Adjacent to Coal Refuse Impoundments

    By David Newman

    Coal refuse impoundments and underground mines are frequently sited in close vertical and horizontal proximity in the valleys of the Southern Appalachian coalfield. The steep V-shaped valleys provide

    Jan 1, 2003

  • SME-ICGCM
    Rockbolted Support of Retreat Longwall Gateroads at 1000m Depth: A Case History

    By Karl Brandt

    Longwall panel 580 has recently been retreated in the Zollverein 1/2 seam at a depth of approximately 1000m at Auguste Victoria mine with rectangular rockbolted roadways used for both the maingate and

    Jan 1, 2002

  • SME-ICGCM
    Influence Of The Sloping Of Ground Surfaces On Mine Subsidence (165d3ebb-e4c1-4bc8-a5e4-409b4e24155c)

    By D. M. Shu

    A two-dimensional finite element modelling technique is applied to predict the subsidence movements on a sloping ground surface above a completely mined panel. The modelling is carried out for the sur

    Jan 1, 1992

  • SME-ICGCM
    Application of geotechnical and geophysical parameters to improve planning reliability in roadway drivage

    By Nikolaos Polysos

    To drive and utilise gate roads economically requires accurate planning and risk assessment considering the variable geomechanical requirements. The geomechanical part of roadway planning is secure

    Jan 1, 2002

  • SME-ICGCM
    Longwall Mining-Through the Backfilled In-Panel Entries at Cyprus Emerald Mine

    In recent years, improvements made to the longwall system have accelerated at a faster pace than those made to the gate entry development system. As a consequence, unless planned years ahead of time,

    Jan 1, 1997

  • SME-ICGCM
    Mitigating Subsidence Influences on Residential Structures Caused by Longwall Mining Operations

    By Yi Luo

    The severity of disturbances caused by longwall mining subsidence to various residential structures can be re¬duced. The success of such mitigation efforts depends on accurate subsidence prediction, c

    Jan 1, 2003

  • 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