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  • NIOSH
    Judgment and decision making under stress: an overview for emergency managers

    By Kathleen M. Kowalski-Trakofler

    This paper discusses human judgment and decision making under stress. The authors review selected recent literature across various disciplines and suggest a definition of stress within the context of

    Jan 1, 2003

  • NIOSH
    Mine Planning For Hazard Evasion - The Objective:

    To provide a means for rapidly evaluating proposed mine layouts in order to avoid potential hazards while minimizing loss of coal. The Approach: Development of a computer program that will com

    Jan 1, 1974

  • NIOSH
    Technology For Remote Mine Seal Construction

    By Michael A. Trevits

    Mine fires can be especially perilous because toxic products can quickly spread well beyond the fire zone thereby exposing all underground miners to dangerous and deadly conditions. Since November 19

    Jan 1, 2002

  • NIOSH
    CFD Modeling Of Smoke Reversal

    By J. C. Edwards, C. C. Hwang

    In the design for a fire or smoke emergency, a main concern is maintaining an evacuation path that is free of smoke and hot gases. In ventilated tunnel fires, smoke and hot gases may form a layer nea

  • NIOSH
    Mining Publications List 1995-1999 - Mine Safety And Health - Reports Of Investigations (RIs)

    By R. Larry Grayson

    Barrett EA, Kowalski KM [1995]. Effective hazard recognition training using a latent-image, three-dimensional slide simulation exercise. Pittsburgh, PA: U.S. Department of the Interior, Bureau of Mi

  • NIOSH
    The Mineral Industry Of Other Areas Of South America - Ecuador (461f643b-cf24-405d-97a9-f36289c000e0)

    By Pablo Velasco

    The Ecuadorean mineral sector and overall economy have retained their traditional dependence upon the production and export of hydrocarbon products. Exports of crude oil and its products accounted for

    Jan 1, 1987

  • NIOSH
    RI 7066 Thermodynamics Of Nonlinear Electromagnetic-Fluid Systems

    By W. F. Hughes

    The thermodynamics of an electromagnetic field-fluid interaction system is discussed. A review of the thermodynamics of linear media (the permittivity and permeability taken as functions of density an

    Jan 1, 1968

  • NIOSH
    Knowledge management and transfer for mine emergency response (14278a3b-5cbd-4bef-a4bb-83b6b9b091f2)

    By Charles Vaught

    This paper discusses the fact that US coal mining organisations are losing the knowledge they need in order to be able to respond to emergencies. The authors note that knowledge management provides a

    Jan 1, 2006

  • NIOSH
    Unique Methods

    Ever since the problem of mine pollutant waters has been under consideration, different mining methods have been investigated to abate the pollution problem. Two such methods which have been repor

    Jan 1, 1970

  • NIOSH
    APPENDIX C - Channel Sampling Data and Hardgrove Grindability Test Data

    By Thomas V. Falkie, R. Venkataramani

    Table 15. Summary of Physical Characteristics of Coal and Shale from Channel Samples. Table

    Jan 1, 1972

  • NIOSH
    Acknowledgments - References

    Work on this program was supervised by R. C. Streeter, Project Scientist, R. K. Young, Principal Investigator, and R. A Glenn, Project Director Technicians involved in the conduct of the experimen

    Jan 1, 1971

  • NIOSH
    Behavioral And Organizational Dimensions Of Underground Mine Fires - Introduction

    By Launa G. Mallett, Charles Vaught, Kathleen M. Kowalski, Charles D. Litton, Michael J. Brnich, Ronald S. Conti, Henry P. Cole, William J. Wiehagen

    How do people behave when they are trying to get out of a fire? Are escape activities different in each incident, or will most actions be predictable across events? Do persons make the same sorts of d

    Jan 1, 2000

  • NIOSH
    Coal Mine Communications

    By Jürgen F. Brune, William H. Schiffbauer

    Communication problems are not new. Research in this area goes back as far as 7922 when the US Bureau of Mines performed experiments to detect radio signals from inside their experimental mine in Bruc

  • NIOSH
    RI 6745 Experimental Longwall Mining In A Pennsylvania Anthracite Mine (In Two Parts) 2. Use Of A Shearer Loader

    By Wilbert T. Malenka

    In its search for a highly productive mining system for anthracite beds pitching from 100 to 200, where conventional mobile equipment cannot be used) the Bureau initiated a longwall project by introdu

    Jan 1, 1966

  • NIOSH
    RI 2668 Test of CO 2 Recorders

    By J. F. Barkley

    "A knowledge of the carbon dioxide (002) content of the products of combustion, particularly from the boiler furnace, is very valuable. An instantaneous indication of the CO2 can be used as a useful g

    Mar 1, 1925

  • NIOSH
    Nonmetal Operator Mining Facts - 2006 - Mining Operations

    In 2006, a total of 741 nonmetal mining operations reported employment to the Mine Safety and Health Administration (MSHA).1 These mines (e.g., potash, gypsum, salt) comprised 5.0% of all operations.

    Jan 1, 2008

  • NIOSH
    Knowledge management and transfer for mine emergency response

    By Charles Vaught

    This paper discusses the fact that US coal mining organisations are losing the knowledge they need in order to be able to respond to emergencies. The authors note that knowledge management provides a

    Jan 1, 2006

  • NIOSH
    Nonfuel Minerals Survey Methods (0861a349-e29a-45a4-801b-424be91b07cd)

    The Bureau of Mines Minerals Information organization collects worldwide data on virtually every commercially important nonfuel mineral commodity. These data form the base for tracking and assessing t

    Jan 1, 1987

  • NIOSH
    A Spatial/ Spectral Domain Microwave Coal Seam Imaging Sensor-Progress In Signal Processing

    By Robert L. Chufo

    The paper, "An Electromagnetic Roof and Rib Thickness Sensor" presented at The 12th WVU International Mining Electrotechnology Conference in 1992, presented the results of roof coal thickness measurem

  • NIOSH
    General Review

    By R. V. Ramani, A. S. C. Owili-eger

    The origin of gaseous hydrocarbons in coal, predominantly methane, can be traced to the natural processes of coalification. The higher rank coals or the more deeply buried seams retain more gas than l

    Jan 1, 1974