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  • ISEE
    Low-Rise Building Damage from Low-Amplitude Ground Motions

    By Roger E. Scholl

    Data on off-site low-rise building damage from underground nuclear testing at the Nevada Test Site (NTS) of the United States Atomic Energy Commission (AEC) [The AEC has been called the United States

    Jan 1, 1976

  • ISEE
    Numerical Simulation of Fragmentation During the Throw Stage of Blasting

    By C H. Ryu

    This paper presents a simplified two-dimensional numerical model of block fragmentation in a Jointed rock mass during the late or throw stage of a blast after wave effects have subsided. The model is

    Jan 1, 1986

  • ISEE
    Blasting: Strict Tort Liability or Negligence

    By Timothy Stark

    At present blasters are strictly liable under tort law for personal injury and property damage caused by ground vibrations and/or air overpressures. The application of strict tort liability to vibrati

    Jan 1, 2002

  • ISEE
    Experimental Techniques To Reduce Blast Vibration Level, Tourah, Cairo, Egypt.

    By Abdel Rahman, M. Khaled, Abo Makarem

    There are four large limestone quarries, located nearby Cairo metropolitan. Drilling and blasting operations are used to extract limestone for the cement industries. In these quarries, the blast vibra

    Jan 1, 2007

  • ISEE
    Demolition of Old Bridge Piers ByBlasting

    By S. Mandal, R. Singh

    The demolition of structures with explosive though most rapid, safe and efficient requires planned blast design parameters with respect to geometric and strength properties of the structure to be demo

    Jan 1, 2001

  • ISEE
    Measurements to Determine the Effect of Selected Additives on the Detonability of ANFO Mixtures

    By Roger L. McCarthy, Ali Reza

    The use of an ammonium nitrate-fuel oil (ANFO) explosive in the Oklahoma City Federal Building bombing has led to a renewed interest in using additives during the manufacturing process of ammonium nit

    Jan 1, 1999

  • ISEE
    Mass Blast Blastingng Techniques as Practised at Mount Isa Mines Limited

    By Robert E. Miller

    Mass blasting of open stopes and pillars is a normal operating practice at Isa Mine. Three main parameters are used to classify the types of mass blasts. These are type of explosive used, blasthole di

    Jan 1, 1980

  • ISEE
    The Evolution of Loading 4 1/2 Inch Diameter Upholes at Kidd Creek No. 1 Mine

    By R Malo, A Yetter

    The use of large diameter blastholes for underground mining began approximately twelve years ago and are now routinely employed in a variety of ore types and stope designs. These large boreholes, rang

    Jan 1, 1984

  • ISEE
    The Prediction of Frequency Content Using Spectral Analysis and Blasting Parameters

    By Terry Nichols, Karl E: Warkwick Burgher, Charles J. Wideman

    The application of Fourier spectral analysis to records of ground vibration generated by over 100 explosions from an open pit mine is used to develop empirical predictor equations that relate the resp

    Jan 1, 1990

  • ISEE
    The Effect of Angled Bottoms on the Impulst Delivered to Armored Vehicles

    By Leslie Taylor, Kevin Genson

    This paper reports on an experimental study of the effect that bottom shaping might have on the impulse delivered to a light armored vehicle due to a buried mine detonating beneath the center of it. T

    Jan 1, 2008

  • ISEE
    Blasting Accidents in Underground Mines a Two Decade Summary

    By Harry Verakis, Thomas Lobb

    This paper is a summary and an update of the underground mine blasting accident investigations and studies previously conducted by the Mine Safety and Health Administration (MSHA) and the former US. B

    Jan 1, 2002

  • ISEE
    Burden Velocity Analysis

    By Patricia Mendoza Watson, Lundquist Robert G

    The velocity with which the burden moves after blasting is of concern for safety and economic reasons. Models developed for motion velocity by various researchers were reviewed and likely model parame

    Jan 1, 1990

  • ISEE
    Unusual Accidents Caused by ESD

    By James G. Stuart

    For precise control and timing of a blast, people use electric detonators. Most of these contain a fine metal “bridgewire,” that heats to the required burning temperature when electric current passes

    Jan 1, 2005

  • ISEE
    Pneumatic Loading of ANFO Underground

    By J J. F Smith

    The application of pneumatically loaded ANFO for underground mining has continued to increase year by year since the technique was first developed and introduced underground during the early 1960's. I

    Jan 1, 1982

  • ISEE
    Evolution of the Avalauncher

    By John Brennan

    The Avalauncher has been an integral tool for avalanche mitigation work for close to 50 years. With their ability to place a kilogram of high explosives up to two thousand meters away, they routinely

    Jan 1, 2009

  • ISEE
    Cast Blasting: Design and Applications

    By Travis Watts, Chris Prater, G. T. Lineberry

    Moving overburden at minimal cost is becoming increasingly important to coal mining companies throughout the U.S. The coal market is currently doing well, with an average spot coal price for Central A

    Jan 1, 2006

  • ISEE
    Controur Control blasting in Soft Rock Excavation

    By W. Jiao, Y. Yongqi, R. Shan

    Soft rock mines are distributed through out P.R.C. And drilling and blasting is still the main method of driving a tunnel in these mines. Traditional smooth blasting has been widely and deeply studied

    Jan 1, 2000

  • ISEE
    Efficient use of energy to control bench damage

    By Elias Poulakidas, Marco Arellano

    The impact of a higher copper price on the open pit metal mining sector has derived in a faster and safer way in which the mining operation of broken and mineralised material is carried out. In this r

    Jan 1, 2008

  • ISEE
    Increasing Cast Blasting Benefit with the Use of High Speed Motion Picture Photography and Analysis

    By John L. Floyd

    The use of explosive energy to displace overburden or waste material can provide substantial savings to operations which normally rely on mechanical means for material removal. To optimize the availab

    Jan 1, 1988

  • ISEE
    Discrete Element Modeling of Rock Blasting in Benches, with Joints and Bedding Planes - Initial Development (Geomechanics Department, 6117 Sandia National Laboratories)

    By Dale S. Preece

    A Discrete element computer program named DMC (Distinct Motion Code) has been developed for modeling rock blasting. This program employs explicit time integration and uses spherical or cylindrical ele

    Jan 1, 1995