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  • CIM
    Pit limit optimization using stochastic process

    By M. Ataee-pour, S. E. Jalali

    So far, a large number of algorithms have been developed for the optimization of pit limits, most of which follow deterministic rules. In this paper, a new algorithm is introduced, which follows a pro

    Jan 1, 2006

  • AIME
    Pit Limit Shell Generation – Hand Methods

    By Benjamin C. Koskiniemi

    Introduction When evaluating any ore body, one of the first questions concerns the ore reserves. In the case of an open pit mine, this is not possible to answer reliably until the ultimate (final)

    Jan 1, 1979

  • AIME
    Pit Limit Slope Design – Analytical Design

    By Dermot M. Ross-Brown

    Introduction Slope angles are one of the major factors affecting the shape of the final pit and the location of the walls Due to differences in geology, the optimum slope angles vary from pit to pit

    Jan 1, 1979

  • CIM
    Pit Operations at the Marmoraton Mine Hastings County, Ontario

    By C. A. Lorenson

    THE Marmoraton mine is located a mile southeast of Marmora, a village in Hastings county, Ontario, 130 miles east from Toronto and 143 miles west of Ottawa. Highway No. 14 from Belleville intersects H

    Jan 1, 1958

  • SME
    Pit optimization on clustered realizations: Identifying functional scenarios

    By Tyler Acorn, Brandon Wilson, Jeff Boisvert

    Project-scale decisions in surface mining operations rely on the optimization and subsequent evaluation of pit limits. This process ignores the ability for mine plans to adapt as more information is g

  • SME
    Pit Optimization on Clustered Realizations: IdentifyingFunctional Scenarios Mining, Metallurgy and Exploration

    By Tyler Acorn, Brandon Wilson, Jeff Boisvert

    Scenario-level uncertainty is a representation of large-scale differences encountered when considering ultimate mining pits optimized over various subsets of stochastic realizations. Accounting for sc

  • AIME
    Pit Planning And Design - Coal Mines

    By Damon H. McFadden

    5.1-1. Geographic and Geologic Factors. Surface mines are located where the coal seam can be economically uncovered and where the product can be utilized competitively with other fuels. The planning a

    Jan 1, 1968

  • SAIMM
    Pit Slope Design And Risk ? A View Of The Current State Of The Art

    By T D. Sullivan

    Risk lies at the heart of all mining and nowhere more so than in pit slope design. Mining is principally about two areas of risk; safety and economics. This paper addresses the main elements of pit

    Jan 1, 2006

  • SME
    Pit Slope Design Challenges In Residual Soils And Weathered Rock: Background And A Case Study

    By J. Geyer, B. T. Burton, H. W. Newcomen

    For open pits developed in tropical climates the upper portions of the pit walls are often located in residual soils and weathered rock. Due to the presence of relict structures, and the relatively l

    Jan 1, 2000

  • SME
    Pit slope monitoring and back analysis of the Berkeley pit

    By W. C. Goldberg, E. M. Frizzell

    Monitoring slope displacement in open-pit mines can help predict collapses and prevent serious damage, injuries, and fatalities. Early detection of movement may indicate the need to modify slope geome

    Jan 1, 1989

  • SME
    Pit To Plant - Current Trends

    By Allan D. Fernie

    Growing interest in pit crushing and conveying is evident from the many articles, technical papers, and new equipment development recently presented. Application of a pit crushing and conveying syste

    Jan 1, 1983

  • SAIMM
    Pit Wall Failures On ?Unknown? Structures

    By Phillip M. Dight

    A number of impending and actual pit wall failures have been observed and documented which have been interpreted to initiate on newly generated structural features. This infers failure through intact

    Jan 1, 2006

  • SAIMM
    Pit Wall Failures On ?Unknown? Structures (76621150-30cb-4052-b037-75f5ff3cf933)

    A number of impending and actual pit wall failures have been observed and documented, which have been interpreted to initiate on newly generated structural features. This infers failure through intact

    Jan 1, 2006

  • AUSIMM
    Pit Water Management in a Mine Planning Cycle, Olympic Dam Case Study

    By D Barclay, S Mercer, S Wright

    Mine water management is often an afterthought in mine planning processes and can introduce significant risks to projects when studied as a stand alone component at a later stage in the mine design. I

    Jan 1, 2009

  • AUSIMM
    Pit-Lake Water Quality in Coal Deposits, Southland, New Zealand

    By D Craw, J Pope, B Peake

    Southland contains over 70 per cent of New ZealandÆs recoverable coal resources, and an investigation into the potential effects of coal mining on SouthlandÆs water resources is therefore of interest.

    Jan 1, 2006

  • IOM3
    Pit-timber and its preservation.

    By Groom P.

    The wastage of timber in coal-mines that is caused by decay is very great; in fact, far greater in this country than is generally realized. Mr. E. W. Peters estimates that of the whole wastage of timb

    Dec 1, 1916

  • CIM
    Pitchblende Deposits of the Saint Louis Fault

    By R. B. Allen, E. E. N. Smith, B. C. MacDonald

    "LocationTHE MAIN PROPERTY and townsite of Eldorado Mining & Refining, Limited, Beaverlodge Operation, is on the north shore. of Beaverlodge lake, •about seven miles north of the deserted town of Gold

    Jan 1, 1954

  • CIM
    Pitchblende Occurrences of the Goldfields Area, Saskatchewan

    By A. M. Christie

    Acknowledgements The following account has been compiled mainly from records and maps of Eldorado Mining and Refining (1944), Limited, hereinafter called the Crown Company. This work was done under

    Jan 1, 1949

  • SME
    Pitching Seam Operations of Thompson Creek Coal and Coke Corp. ? Summary and Conclusions

    By Andrew Allan

    [The Thompson Creek Coal and Coke Corporation, a. mall company engaged in producing coal in the Rocky Mountains of Colorado, is currently engaged in a struggle of destiny to increase their production

    Jan 1, 1965

  • SME
    Pitfalls And Lessons Learned In Pump Station Construction

    By Steven R. Lowe

    Construction of a pump station, consisting of an inlet chamber, wet well and pump chamber, required excavation to a depth of 9.7 m (32 ft) below ground surface and more than 7.6 m (25 ft) below the gr

    Jan 1, 2011