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  • AUSIMM
    Meteorological Forecasting of Blast Noise from the Del Park Minesite (fbcdcfc5-5412-43cd-8805-cbe0739cecc8)

    Alcoa of Australia's Western Australian bauxite mining operations in the Darling Ranges, southeast of Perth, present major challenges in the control of air blast. The close proximity of rural com

    Jan 1, 1983

  • AIME
    Meteorological Influence On Radon Concentration In Drillholes

    By Allan B. Tanner

    The effects of radon in drillholes on gamma-ray logs have been described by L. S. Hilpert and C. M. Bunker1 Since these effects may cause drastic error in the evaluation of uranium deposits, it is use

    Jan 7, 1959

  • CIM
    Meter-wide veins and a kilometer-wide anomaly: wall-rock alteration at the Campbell Red Lake and Dickenson gold mines, Red Lake District, Ontario

    By C. Jay Hodgson, P. J. MacGeehan, T. Sanders

    "The orebodies of the Campbell and Dickenson mines are localized within an anomalously fissile and deformed zone that transects the eastern margin of a dominantly mafic volcanic complex close to its c

    Jan 1, 1982

  • CIM
    Methane Conditions in 11 Seam

    1.Assessment of methane content in coal. Given a naturally low methane content in 11 Coal Seam and the fact that the areas of the 11 Seam adjacent to the tunnelway were degassing for a very, very lon

    May 1, 2003

  • NIOSH
    Methane Control At Continuous Miner Sections

    By Gerrit V. R. Goodman, Fred N. Kissell, Charles D. Taylor

    In This Chapter [Methane emission peaks Exhaust line curtain or duct The spray fan system Dust scrubbers with blowing ventilation Dust scrubbers with exhaust ventilation The venti

    Jan 6, 2006

  • NIOSH
    Methane Control In Metal/Nonmetal Mines

    By H. John Head, Fred N. Kissell

    In This Chapter [Gas reports from around the world Regulations for gassy mines in the United States Differences between metal/nonmetal mines and coal mines Monitoring for methane and takin

    Jan 6, 2006

  • SME
    Methane Control On Longwalls - European And U.S. Practices ? Introduction

    By Joseph Cervik

    Common methods of controlling gob gas in U.S. nines are by means of ventilation of gob areas and gas drainage through surf ace boreholes. Costs of drilling surface gob holes increase as deeper coalbed

    Jan 1, 1979

  • NIOSH
    Methane Control Research: Summary Of Results, 1964-80

    By Maurice Deul

    This bulletin summarizes the work conducted under the Bureau of Mines methane control research program during the years 1964 to 1979. This research effort was directed toward improving existing method

    Jan 1, 1986

  • SME
    Methane Control Technology During Mining

    By Joseph Cervik

    The mined coal bed and surrounding strata are both sources of methane which must be control led during mining. During developmental mining, the mined coalbed is the primary methane source; during retr

    Jan 1, 1981

  • SME
    Methane Dilution Using High Volume Scrubbers in a Continuous Miner Section

    By James Veri, Andrew H. Stern, Gerald N. Torbert

    When mining coal, the occurrence of high methane liberation rates can often overwhelm the existing ventilation capabilities of the working place and result in elevated levels of methane gas. These “ga

    Jan 1, 1997

  • AUSIMM
    Methane Drainage Experience with Horizontal Boreholes in a Western Coalbed

    By Perry JH, King RL

    The Bureau of Mines in cooperation with Kaiser Steel Corporation conducted two methane drainage studies in an advancing section of the Sunnyside No. I Mine where production was being severely hampe

    Jan 1, 1982

  • AUSIMM
    Methane Drainage in Retreating Longwall with Single Gateroads

    The need to solve the problems associated with spontaneous combustion, system of ventil- ation and methane drainage in gassy coal mines has brought about the development of mining and degassing meth

    Jan 1, 1982

  • AUSIMM
    Methane Drainage in Underground Coal Mines in China

    By Boshou B

    In China, there are approximately 3,000,000 million m3 of gas (methane) included in highly gassy mines liable to coal/gas outbursts; the amount of methane pre-drainage possible is estimated at 400,

    Jan 1, 1988

  • AUSIMM
    Methane Drainage Investigation as a Method of Control of Outbursts at West Cliff Colliery

    By Griffiths L, Marshall P

    fhis paper describes investigations into drainage of gas from the solid to control outbursts. Initial studies conducted on drainage of shear zones showed that, given enough time, these can be succ

    Jan 1, 1980

  • SME
    Methane Drainage Systems And Future Requirements In South African Coal Mines

    By A. P. Cook

    Methane drainage on a mine-wide scale is a relatively new technology to South African coal mines. Shallow seams and apparently low methane contents have been assumed to result in less methane problems

    Jan 1, 1993

  • AUSIMM
    Methane Drainage Under the No. 7 Longwall Block Appin Colliery

    By Regan R

    Appin Colliery mines the Bulli Seam with a gas composition of 98.5% methane and 1.5% carbon dioxide. Relaxation of the strata generally occurs to below the base of the Wongawilli Seam, some 40 m be

    Jan 1, 1982

  • SME
    Methane Drainage With Cross-Measure Boreholes On A Retreat Longwall Face

    By Pramod C. Thakur

    Methane drainage by cross-measure boreholes on retreat longwall faces can be a viable alternative to the vertical gob degas boreholes under favorable circumstances. The research was done in a mine wor

    Jan 1, 1983

  • NIOSH
    Methane Emission From U.S. Coal Mines, A Survey

    By M. C. Irani, Maurice Deul, M. G. Zabetakis, T. G. Bobick

    This survey was conducted to determine the magnitude of the methane emission and control problem in U.S. bituminous coal mines. The resultant data indicate that the emission rate for any given coalbed

    Jan 1, 1972

  • SME
    Methane Emissions And Airflow Patterns On A Longwall Face

    By S. J. Schatzel

    Coal mine longwall face ventilation is an important component of the overall mine ventilation system. Increases in the production rate due to higher capacity mining equipment tend to increase methane

    Jan 1, 2012

  • SME
    Methane emissions and airflow patterns on a longwall face: Potential influences from longwall gob permeability distributions on a bleederless longwall panel - SME Transactions 2017

    By S. J. Schatzel, R. B. Krog, H. Dougherty

    Longwall face ventilation is an important component of the overall coal mine ventilation system. Increased production rates due to higher-capacity mining equipment tend to also increase methane emissi

    Jan 1, 2017