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  • ISEE
    Are You As Efficient As You Can Be? - An Underground Paper-

    By Roger L. Keller

    This paper examines the aspects of differing types of blasting cuts in underground headings with consideration to the reduction of number of holes and costs. At least one comparison study is related w

    Jan 1, 1989

  • ISEE
    Optimum Drill and Blast an Everchanging Target

    By Peter G. Bellairs

    The traditional concept of Optimum Drill and Blast is that it is achieved when ore is produced at the lowest unit cost and due to the complexities of most mining operations represents a band which ext

    Jan 1, 1995

  • ISEE
    The Application of High Tech Automation in Drilling and Blasting

    By Paul Worsey, Robert Sickler

    Today, America's mining and construction industries are faced with operating under a condition of reduced profit margins. This makes the implementation of new technology far more sensitive to investme

    Jan 1, 1987

  • ISEE
    Control of Blast Overpressure and Vibrations at the Underground Research Laboratory

    By D P. Onag, B Mohanty

    AECL Research (AECL) has constructed an Underground Research Laboratory (URL) as a facility for research and development in the Canadian Nuclear Fuel Waste Management Program. The objectives of the pr

    Jan 1, 1991

  • ISEE
    Shot Improvements through Field Controls: Applications of Passive Laser Survey Systems

    By B H. A Brown

    The components of passive laser survey systems and their relative functions are presented. A general outline of the capabilities and the information available are followed by two case histories. These

    Jan 1, 1990

  • ISEE
    The Stability of Slopes Subjected to Blasting Vibration-Assessment and Application in Hong Kong

    By R Keller, R Law

    In the rush to beat the clock before the handover of Hong Kong back to China in June of 1997, an unprecedented amount of infrastructure work is being undertaken at a breakneck pace. In the middle of t

    Jan 1, 1996

  • ISEE
    Modern Blast Engineering to Improve Mine Profitability

    By Josh Campbell

    Modern blast engineering involves the use of modern technology to provide more efficient blasts. Through the use of improved measurement techniques more information can be obtained on many of the phys

    Jan 1, 1998

  • ISEE
    Using State-of-the-Art Techniques for Positioning Mining Equipment

    By George P. Schivley

    The careful positioning of the drill rigs that drill the holes into which explosives are then loaded is critical to the success of the subsequent blast. Today a system of satellites in space, each tra

    Jan 1, 1996

  • ISEE
    Blast Design Optimization to Minimize Effect of Air Blast

    By Michail G. Egorov

    As well as destruction and moving rock, the blast energy sets up a seismic wave in the ground and a shock wave in the air, which can present danger to buildings and disturbance to human occupants. Thi

    Jan 1, 1996

  • ISEE
    Metafex Composites: Safe, Energetic, Economical Replacements for Explosives

    By David Davison, Richard Johnson

    Metal-oxidant blends are ordinarily unsuitable as diiect replacements for explosives, because the reaction occurs too slowly. Oxide coatings protect metals, preventing or delaying reaction. By contras

    Jan 1, 1999

  • ISEE
    Guidelines for Handling and Documenting Blasting Complaints

    By Robert L. Brooks

    Blasting liability problems are frequently compounded by a company's inability to effectively communicate with concerned property owners and the lack of adequate complaint documentation. Often, by the

    Jan 1, 1992

  • ISEE
    Progressive Development of Bulk Emulsion Explosives, Blast Application Improvements, and Blast Crew Training at the Ok Tedi Mine, Papua New Guinea

    By Cam Grundstrom

    The Ok Tedi Mine is a large open pit copper and gold mine located in a remote section of the Western Province, Papua New Guinea, with an annual rainfall of over 10 metres. Ok Tedi mines an average of

    Jan 1, 1997

  • ISEE
    Certification Knowledge and Experience Requirements for Blasters

    By John R. Coulson

    A survey of federal and state licensing requirements for blasters employed on the surface and underground was conducted for the Bureau of Mines. Subdivisions include surface and underground (large and

    Jan 1, 1980

  • ISEE
    Computer-Aided Blast Fragmentation Prediction

    By G E. Exedaktylos, Y Zhou

    The complex and non-linear nature of blast fracturing has restricted common bract design primarily to empirical approaches. The code developed for this investigation simulates the pattern of interacti

    Jan 1, 1989

  • ISEE
    Blasting at the Silver Cliff Tunnel Approaches Near Two Harbors, MN

    By John Turner, James Lamb

    The Minnesota Department of Transportation (MNDOT) has an extensive project to improve driving conditions and reduce hazards to motorists on US Highway 61 between Duluth, MN, and Canada along the nort

    Jan 1, 1994

  • ISEE
    Technical Review of Safe Blasting Design at Limited Distance

    By Agus Setiabudi

    East Pit Wira II Project in South Kalimantan, Indonesia with a radius of <500 meters (1,640 ft) from residential has about 454,168 tonnes of coal reserves, with a total remaining reserves of 3,369,383

    Jan 1, 2014

  • ISEE
    Geologic Data for Blasting at the Minntac Mine

    By John Eloranta

    This paper is a case study showing the assembly of available rock property parameters for the purpose of blast design. Blast optimization now includes subsequent milling and requires a full knowledge

    Jan 1, 1996

  • ISEE
    Perimeter Control with Tracer Blasting

    Blasting is a very cost effective method of rock fragmentation but its uncontrolled application often results in excessive damage to the perimeter of an excavation. Several perimeter control technique

    Jan 1, 1997

  • ISEE
    A Repumpable Emulsion for Use in Mines Subject to Afterblast Sulfide Dust Explosions

    By Tom Medak, Don H. Cranney, G Paul McKay, R Douglas Reid

    Explosive initiated afterblast dust explosions can occur in high sulfide ore mines when the flame generated by the detonating explosives ignites the sulfide dust produced from the blast, from previous

    Jan 1, 1994

  • ISEE
    Blasting Procedures at Woodville Lime and Chemical Company

    By Calvin J. Konya

    The Woodville Lime and Chemical Company Limestone Quarry is located in Sandusky County, Ohio. Fifty years ago, when quarrying began, it was situated approximately two miles from the town of Woodville.

    Jan 1, 1977