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  • NIOSH
    IC 9311 - In-Mine Evaluation Of Smoke Detectors

    By G. S. Morrow, C. D. Litton

    This report presents the results of a U.S. Bureau of Mines evaluation of smoke detectors placed in conveyor belt entries of underground coal mines. The selected mines are located in six different Mine

    Jan 1, 1992

  • NIOSH
    Mine Fires – Measuring The Efficacy Of Gas-Enhanced Foam

    By Alex C. Smith, Thomas P. Mucho, John B. Walsh, Alden Ozment, Michael R. Thibou, Michael A. Trevits

    The National Institute for Occupational Safety and Health (NIOSH), with US Foam Technologies, Inc. and On Site Gas Systems, Inc., conducted research on the remote application of extinguishing agents w

  • NIOSH
    Bulletin 178-C Petroleum Investigations and Production of Helium

    By Van H. Manning

    PETROLEUM INVESTIGATIONS. The work of the petroleum division of the Bureau of Mines during the period of the war was under the supervision of Chester Naramore, chief petroleum technologist. In its pet

    Jun 1, 1919

  • NIOSH
    A Comparison Of Longwall & Continuous Mining Safety In US Coal Mines 1988 – 1997 - Longwall Mining Safety

    By Sean Gallagher, Rhys Llewellyn, Jay Mattos

    This paper contains the results of an examination of accident, injury, employment, and production information reported to the U.S. Department of Labor's Mine Safety and Health Administration (MSH

  • NIOSH
    Bulletin 27 Test of Coal and Briquets

    By D. T. Randall

    In carrying out a general plan of ascertaining more efficient and more economical methods of utilizing the fuel resources of the United States, in order to prevent unnecessary waste and thus conserve

    Jan 1, 1911

  • NIOSH
    MLA 29-84 - Mineral Resources Of The Morongo Wilderness Study Area (BLM No. CDCA-218), San Bernardino County, California

    By Lucia Kuizon

    The Morongo Wilderness Study Area (WSA) is in south central San Bernardino County, California. U.S. Bureau of Mines examined the area during the fall of 1983. No mines, prospects, leases, or mining cl

    Jan 1, 1984

  • NIOSH
    Appendix 1 - Structural Gap Comparison

    By Lloyd A. Morley, Robert Stefanko

    Table

    Jan 1, 1974

  • NIOSH
    RI 2219 The Gasoline Explosion At Memphis, Tennessee, January 24, 1921

    By D. B. Dow

    The transportation of any commodity which is actually or potentially a source of fire or explosion, has been made safe, insofar as humanly possible, by rigid requirements as to inspection mechanical s

    Feb 1, 1921

  • NIOSH
    IC 6144 A Gas Explosion In A Rock-Dusted Mine ? Introduction

    By G. S. McCaa

    Rock-dusting is an. effective means of preventing coal-dust from propagating an explosion in a coal mine, but it will not prevent gas from igniting-explosively and with much attendant damage locally.

    Jan 1, 1929

  • NIOSH
    Bulletin 47 Notes on Mineral Wastes

    By Charles L. Parsons

    During the past year, in producing 500,000,000 tons of coal we wasted or left underground, in such condition that it probably will not be recovered in the future, 250,000,000 tons of coal; we turned l

    Jan 1, 1912

  • NIOSH
    Bulletin 97 Sampling and Analyzing Flue Gases

    By Henry Kreisinger, F. K. Ovrız

    Some of the investigations conducted by the Bureau of Mines have for their object the collecting and disseminating of information regard- ing methods by which the fuels of the country may be most effi

    Jan 1, 1915

  • NIOSH
    Regional Mineral Industry Review Of South Asia

    By James A. West

    THE South Asian countries of India, Ceylon, Pakistan, Afghanistan, Nepal, Bhutan, and Sikkim have a large variety of mineral resources; however, in spite of mineral industry growth during 1964, develo

    Jan 1, 1966

  • NIOSH
    RI 7311 Relative Effects Of Grouped Physical Variables On The Revenue-Cost System Of A Lead-Zinc Mining Operation

    By Richard E. Dawes

    Physical variables, a principal factor in the economies of mineral production, affect both capital and direct operating costs. By using a revenue-cost system for the framework, the analyses of revenue

    Jan 1, 1969

  • NIOSH
    RI 7383 A Statistical Interpretation Of Sample Assay Data From The Getchell Mine, Humboldt County, Nev.

    By George S. Koch

    The distribution of gold in part of the Getchell mine, Humboldt County, Nev., is presented through the statistical analysis of 956 assays of rock cuttings from wagon-drill holes. Two methods to predic

    Jan 1, 1970

  • NIOSH
    RI 9582 - In Situ Stress at the Lucky Friday Mine (In Four Parts)

    By W. Blake, J. K. Whyatt, T. J. Williams

    Researchers at the U.S. Bureau of Mines collected and analyzed over core measurements and other indicators of in situ stress characteristics at the Lucky Friday Mine, Mullan, ID. An analysis of these

    Jan 1, 1995

  • NIOSH
    The Relationship Of Roof Movement And Strata-Induced Microseismic Emissions To Roof Falls

    By J. Litsenberger, T. E. Marshall, P. R. Coyle, L. J. Prosser, A. T. Iannacchione

    For the first time in an underground stone mine, the relationship between roof movement and microseismic emissions was examined in conjunction with two distinct roof fall areas. As roof monitoring in

  • NIOSH
    IC 7584 Truck Haulage at the National Lead Co. Open-Cut Ilmenite-Magnetite Mine Tahawus, N.Y

    By Robert S. Sanford

    "INTRODUCTION AND SUMMARYThis paper is one of a series recently undertaken by the Mining Branch, Bureau of Mines, College Park, Md., to describe current practice in hauling ore and waste by truck at

    Oct 1, 1950

  • NIOSH
    Summary Report Of Operational Communications Working Group – 1. Summary

    By Martyn F. Roetter

    The work of the operational communication systems' group dealt with a range of communication needs and functions within mines, primarily along haulageways, to and within sections up to the workin

    Jan 1, 1973

  • NIOSH
    Examining Longwall Shield Failures From An Engineering Design And Operational Perspective

    By Thomas M. Barczak

    Longwall operators are again pushing the envelope in terms of life expectancy for longwall shields. State-of-the-art shields are now expected to last more than 60,000 loading cycles, twice the life e

    Jan 10, 2000

  • NIOSH
    Using A Postfailure Stability Criterion In Pillar Design

    By R. Karl Zipf

    Use of Salamon's stability criterion in underground mine design can prevent the occurrence of catastrophic domino-type pillar failure. Evaluating the criterion requires computation of the local

    Jan 5, 1999