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  • AUSIMM
    Ventilation Design for Xstrata Copper's Ernest Henry Underground Project Prefeasibility Study

    The Ernest Henry Mine is an open pit copper-gold mining operation located in north-west Queensland, Australia. It is owned and operated by Xstrata Copper with a current concentrator throughput of appr

    Jan 1, 2008

  • SME
    Ventilation Design for Yucca Mountain Exploratory Studies Facility

    By Romeo S. Jurani

    Yucca Mountain, located in Southern Nevada approximately 160 krn northwest of Las Vegas, is currently the site of intensive surfacebased and underground investigations. The investigations are required

    Jan 1, 1995

  • AUSIMM
    Ventilation Duct Leakage ù A Method of Assessment

    The tangible effects of leakage are presented graphically, and a technique for quantifying the leakage characteristics of a ventilation column using the æSolveÆ capabilities of a common spreadsheet is

    Jan 1, 2002

  • SME
    Ventilation Efficiency Improvements Utilizing A Mine Wide Monitoring System

    By C. W. Chiaretta

    Utah Power and Light Company's Deer Creek Mine had been developed to a point where mine ventilation efficiency had declined to an unacceptable level. Problems identified were ventilation of inact

    Jan 1, 1990

  • SME
    Ventilation Improvement in Longwall Recovery Face Using Convergence Transducers - Case Study

    By A. Habibi

    The FMC Westvaco Trona Mine is located near Green River, Wyoming and has an annual production of 4.5M tons. Trona is an evaporite mineral that is processed into several products, mostly soda ash. The

    Feb 23, 2014

  • CIM
    Ventilation Mistakes and Consequences - Real Life Experiences

    By Euler De Souza

    "The uninterrupted operation of a ventilation system is critical to ensure the mine meets its scheduled production and, as important, is vital to the health and safety of all personnel working undergr

    Jan 1, 2019

  • SME
    Ventilation Monitoring and Control in Mines "Mining, Metallurgy & Exploration (2020)"

    By MAHESH SHRIWAS, CHRISTOPHER PRITCHARD

    Ventilation monitoring and control in mines are becoming an integral part of day-to-day activity for maintaining health and safety of miners. The authors evaluate potential real-time monitoring soluti

    May 12, 2020

  • SME
    Ventilation Monitoring Instrumentation

    By Fred N. Kissell, George H. Jr. Schnakenberg

    INTRODUCTION A variety of instruments are available for measuring or monitoring the performance of underground mine-ventilation systems. In general terms, the instruments may be classified as those

    Jan 1, 1982

  • AUSIMM
    Ventilation monitoring using fibre optics

    By G B. French

    Post a serious heating event underground, and at the direction of the State Mining Safety Authority, a mining company needed to demonstrate the use of cutting-edge technology to mitigate future events

    Oct 12, 2022

  • AUSIMM
    Ventilation of an Open Pit Iron Ore Mine in the Pilbara Region of Western Australia

    By Mouritz M

    Ventilation characteristics and the occurrence of nocturnal surface inversions have been investigated within the Mount Whaleback open cut iron ore mine at Newman in Western Australia. When winds ar

    Jan 1, 1988

  • SME
    Ventilation Of An Underground Testing Facility In Salt (5ff6f90b-f560-41cb-9026-760af7f90788)

    By W. S. Sadik

    This paper presents the ventilation design for an underground testing facility in a salt medium. The underground workings consist of two-12 ft. (3.66 m) diameter watertight shafts and approximately 60

    Jan 1, 1988

  • SME
    Ventilation Of Automated Mining Systems

    Ventilation 'is currently used in mines to sustain human life, prevent explosions, and provide a more healthful work place. Future automated-mining systems could use ventilation techniques quite.

    Jan 1, 1990

  • AIME
    Ventilation Of Butte Mines Of Anaconda Copper Mining Co.

    By A. S. Richardson

    THE conditions that make necessary the mechanical ventilation of the Butte mines of the Anaconda Copper Mining Co. are due to a number of causes, all of which are incidental to the depth at which mini

    Jan 2, 1922

  • SME
    Ventilation Of Conventional Development In Gassy Coal Mines

    By Leonard Sargeant

    The Pocahontas Coal Field consists of eight mineable seams of low-volatile coal in southern West Virginia and Virginia. The deeper seams, especially the Pocahontas No. 3 and No.4 Seams, under heavy co

    Jan 1, 1960

  • CIM
    Ventilation of Development Headings

    By R. W. Thompkins

    The two largest contributors to silicosis in machine men are dust from drilling and dust from blasting. With the advent of the shatter-cut method of blasting, the evils of blasting dust were greatly r

    Jan 1, 1943

  • CIM
    Ventilation of Development Headings at the Sullivan Mine

    By O E. Weightman

    This paper describes the methods used for the ventilation of raises, sublevels and drawholes at Cominco's Sullivan mine. The problems involved in ventilation during blasting, drilling and scrapin

    Jan 1, 1965

  • SME
    Ventilation Of Gob Areas And Use Of Bleeder Systems

    By Stephen Krickovic

    "Bleeding", as used in mine ventilation language, has a number of meanings among mining men and is regarded with different degrees of importance. This lack of uniformity stems from a number of specifi

    Jan 1, 1962

  • SME
    Ventilation of Pillared Areas by Bleeder Entries, Bleeder Systems, or Equivalent Means

    By John D. Kalasky

    Ventilation is necessary in coal mines to supply fresh air to the working faces for the health, safety, and comfort of the miners, and for the circulation of air to the extent that it will dilute, car

    Jan 1, 1973

  • AIME
    Ventilation Of The Copper Queen Mines

    By Charles A. Mitke

    Discussion of the paper by CHARLES A. MITKE, presented at the San Francisco meeting, September, 1915, and printed in Bulletin No. 105, September, 1915, pp. 1941 to 1958. GERALD SHERMAN, Bisbee, Ariz.

    Jan 12, 1915

  • CIM
    Ventilation of the Frood Mine of the International Nickel Company of Canada, Limited

    By R. D. Parker

    Location The Frood ore-body is expressed on surface as a prominent gossan ridge, with a total length of approximately two miles. The original Frood (the old No. 3 mine of the Canadian Copper Company)

    Jan 1, 1932