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  • NIOSH
    Design Methodology For Standing Secondary Roof Support In Longwall Tailgates

    By James J. Bryja, Thomas M. Barczak, Dennis R. Dolinar, Joe Bower, Thomas P. Mucha

    Maintaining ground stability in the gate roads, particularly the tailgate, has always been critical to the success of longwall mining, both in terms of safety and productivity. Several new support tec

  • NIOSH
    Development Of Stress Measurements And Instrument Placement Techniques For Longwall Coal

    By D. R. Tesarik, M. K. Larson, J. P. Dunford, E. G. Zahl

    Western coal mines are operating under increasingly challenging ground conditions. Researchers at the Spokane Research Laboratory of the National Institute for Occupational Safety and Health are coope

  • NIOSH
    Application of Proposed Revised Standards 57.11 -50 to Mines Surveyed

    By David Hoadley, Kenneth R. Maser, Ashok B. Boghani, James E. Billar, D. Randolph Berry, Mackenzie Burnett, Robert H. Trent

    3. Application of Proposed Revised Standards 57.11-50 to Mines Surveyed 3.1 Subparagraph (a) 1 "Each mine shall have at least two separate and properly maintained escapeways from each working pl

    Jan 1, 1976

  • NIOSH
    RI 8725 Laboratory Studies on the Treatment of Ferric Chloride Stripping Liquor From a Clay-Hydrochloric Acid Leaching Process

    By Robert M. Doerr

    In a process being investigated by the Bureau of Mines for recovering alumina from domestic nonbauxitic resources, calcined kaolinitic clay is leached with hydrochloric acid. Iron impurity in the clay

    Jan 1, 1982

  • NIOSH
    IC 9459 - Use Of Simulation Exercises For Safety Training In The U. S. Mining Industry

    By Charles Vaught, Belinda Sue Mills, Henry P. Cole, William J. Wiehagen

    This study reports the results of a survey of organizations that used problem-solving simulation exercises to support mine health and safety training. The exercises are designed to teach judgment and

    Jan 1, 2001

  • NIOSH
    IC 7460 Psychological Aspects of Accident Prevention

    By H. J. Sloman

    "INTRODUCTION Industry, including coal mining, has come to realize that to prevent accidents the human element must be given more consideration than was customary in the past. In formulating safety ru

    May 1, 1948

  • NIOSH
    Introduction (0ce9dd16-a6ad-40c4-9864-9c1a672d570d)

    Surface mining of coal involves removing soil and rock that overlay coal beds in order to expose the coal. Compared to underground coal mining, surface mining generally costs less, is safer for miners

    Jan 1, 1992

  • NIOSH
    Technology News - No. 440 - Improved Dust Control for Surface Coal Mine Drills With Rotoclone Collectors

    Improve the dust-control effectiveness of the Rotoclone1 dry-dust collection systems used on surface coal mine drills.

    Jan 1, 1994

  • NIOSH
    Technology News - No. 434 - An "Insulating" Shotcrete for Heat Abatement in Deep Mine

    Develop and demonstrate a lightweight material that has low thermal conductivity and that would be suitable for placement using shotcrete methods. This material could be applied in deep, hot mines whe

    Jan 1, 1994

  • NIOSH
    Technology News - No. 461 - Coal Dust Explosibility Meter

    Objective: To enable mine operators and mine inspectors to make quick and accurate measurements of the explosible nature of coal and rock dust mixtures.

    Jul 1, 2008

  • NIOSH
    Mine Power Systems Research – 1. Trailing Cables

    By Staff

    This Bureau of Mines report is devoted to descriptions of investigations pertaining to underground mine trailing cables, their handling, splicing, and the use of couplers.

    Jan 1, 1979

  • NIOSH
    Mine Power Systems Research 2. Grounding Research

    By Staff

    This Bureau of Mines publication contains five papers pertaining to the effective grounding of mine power systems, as follows: Ground-check monitor types and safety characteristics; ground wire monito

    Jan 1, 1979

  • NIOSH
    Appendix O – Results of Additional Systems Modifications

    By R. V. Ramani, R. Stefanko, G. W. Luxbacher

    Table

    Jan 1, 1977

  • NIOSH
    Recommendations

    1. Mining to prevent and control underground acid formation should begin with education imparted through: (A) Course work at mining schools to teach prospective engineers. (B) Training of engine

    Jan 1, 1970

  • NIOSH
    Employment And Injuries In The Metal And Nonmetal Industries (6bea7659-d9ca-4863-8124-f2707efd1219)

    Table 1.-Employment and injury experience at metal mines in the United States, by industry groups [ ]

    Jan 1, 1967

  • NIOSH
    Appendix C - Scaling Relationships

    By David A. Monaghan, Kenneth R. Maser, Adi R. Gurdar, D. Randolph Berry

    APPENDIX C SCALING RELATIONSHIPS 1. Scaling Law for Fly Ash Crater Formation The scaling law derived for predicting crater diameters at different scales is developed below by considering the equa

    Jan 1, 1973

  • NIOSH
    RI 9567 - In Situ Stress at the Lucky Friday Mine (In Four Parts)

    By M. J. Beus, M. K. Larson, J. K. Whyatt

    U.S. Bureau of Mines researchers reviewed an in situ stress estimate developed from measurements of overcore strain taken at test sites on the 7300 and 7500 levels of the Star Mine near Mullan, ID. Al

    Jan 1, 1995

  • NIOSH
    NIOSH Ventilation Research Addressing Diesel Emissions And Other Air Quality Issues In Nonmetal Mines

    By R. H. Grau, S. B. Robertson, F. Garcia, A. C. Smith, T. P. Mucho

    Researchers working for the National Institute for Occupational Safety and Health (NIOSH) at the Pittsburgh Research Center are developing ways to protect the health of miners. Part of that effort is

  • NIOSH
    RI 7514 Photochemical Reactivity Of Diesel Exhaust - Some Preliminary Tests

    By B. Dimitriades

    Exploration of the photochemical reactivity of diesel-exhaust hydro-carbons is described. A smog chamber was built, and reactivities of diesel exhaust, gasoline exhaust, and propylene were measured at

    Jan 1, 1971

  • NIOSH
    Mechanics Of A Large, Strain-Type Rock Burst And Design For Prevention

    By Brian G. White, Theodore J. Williams, Jeffrey K. Whyatt

    Detailed mapping and examination of the site of a large rock burst at the Lucky Friday Mine, Mullan, ID, demonstrated conclusively that damage was caused by a splitting and buckling failure mechanism