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A Tiered Approach to Mitigating the Environmental Effects of Underwater Blasting (ISEE)By Thomas M. Keevin, Gregory L. Hempen
Natural resource agencies, under various regulatory authorities, are challenged with permitting underwater explosive use while at the same time protecting aquatic resources. Deciding on whether or not
Jan 1, 1995
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A Two Component Liquid Explosive (Quadrex-L) and Its ApplicationBy Jerome S. Brower
Quadrex-L is a two component liquid explosive which was developed by J. S. Brower & Associates, Inc. to facilitate handling and shipping, and use in unique applications, while emphasizing safety. It m
Jan 1, 1975
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Quantifying Your Blast Fragmentation Using Split-DesktopBy Kirstin Girdner, Tom BoBo, Brian Norton, John Kemeny
Split Engineering is a truly customer oriented company dedicated to providing quantified fragmentation information of the highest integrity to enable process management and control. Technical decision
Jan 1, 2000
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Ground Vibration Effects on StructuresBy David E. Siskind
U.S. Bureau of Mines Report of Investigation 8507 was published in 1980. In a comprehensive analysis of all known blast damage studies plus new definitive data, the USBM authors adopted new safe level
Jan 1, 1998
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SEE Education Foundation (Scholarship Awards - 2004)By N/A N/A
Aw a rd winners from the University of MissouriRolla. Back row from left: Seok Bin Lim, Chris B o l l i n g e r, Adam Kre s l e r, Scott Geer, Joseph Cohn, and James (Buck) Hawkins; Front ro w f rom l
Jan 1, 2004
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The Large Chamber Test for Toxic Fumes Analysis of Permissible ExplosivesBy Dennis J. Viscusi, James H. III Rowland, Lon D. Santis, Mark H. Weslowski
This paper describes the procedure for analysis of toxic fumes from the detonation of high explosives using the Large Chamber at the U.S. Bureau of Mines (USBM), Pittsburgh Research Center (PRC). This
Jan 1, 1995
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The Development and Testing of a New Mechanical Stemming AidBy Paul Worsey, Terry Nixon
The development and testing of a simple mechanical stemming aid (Patents pending) resulting from a Joint venture by Incubator Technologies Inc. and the University of Missouri-Rolla and funded by the U
Jan 1, 1988
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Blast Designs and Controls in Steeply Dipping Coal SeamsBy Ricardo Gaviria, Vincinte Acosta
There are major blast design and field procedures differences between conventional blasting in horizontally bedded coal seams and blasting underneath coal seams in a multi seam deposit with seam incli
Jan 1, 1995
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Impact Sensitivity of DetonatorsBy Paul Worsey, Randall Franklin
This paper is based on an undergraduate research project undertaken for the explosives emphasis in the UMR mining engineering degree program by the first author. The purpose of the selected research t
Jan 1, 2004
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Modern Blast Vibration Monitoring, Modelling and Frequency Control at Tara Mines, IrelandBy Brendan O'Reilly, Outokumpu Zinc, Geoff J. Johnston, S Durucan
Historically vibration monitoring has dealt primarily with surface blasting or "near field" monitoring of underground blasts. The Situation at Tara Mines is different, blasting occurs up to 400m under
Jan 1, 1994
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Surplus Military Propellants as Ingredients in Commercial ExplosivesBy Kevin Tallent
The use of military-type energetic materials in commercial explosive products is not a new concept. In the United States, the techniques for utilizing significant quantities of surplus military explos
Jan 1, 2000
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The Use of Fast Fourier Transform Techniques in Blasting AnalysisBy Mark S. Stagg, Stephen A. Rholl
The U.S. Bureau of Mines has developed computer software which uses fast Fourier transform (FFT) techniques to evaluate blasting data. The software is useful because it allows blasters to evaluate 1)
Jan 1, 1995
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Deep Water Blasting on the River Nile in Southern EgyptBy Rob Grant, Manuel Lopez Cano, Mike Briggs, Ken Fletcher
The scorched desert sands and life giving waters of the River Nile in Egypt have been the back drop to awe inspiring engineering feats for over 4,700 years. The latest engineering marvel to grace the
Jan 1, 2004
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Factors Affecting Anfo Fumes ProductionBy Richard Mainiero, James H. Rowland III
For many years there have been small scale tests available for evaluating the toxic fumes production by capsensitive explosives (DOT Class 1. l), but these could not be used with blasting agents due t
Jan 1, 2000
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Preserving Highwall Stability by Shifting the Dominant Blast Vibration Frequency with Electronic InitiationBy Charles Zdazinsky
"The Multiple Seed Waveform (MSW) blast vibration model, a type of waveform superpositionmodeling developed by Orica Inc., uses vibration data that is collected from a signature hole blast tocharacter
Jan 1, 2016
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Instrumenting Delay-Blast Malfunctions in Underground CoalBy Michael S. Wieland
This report discusses the U.S. Bureau of Mines research regarding the desensitization and malfunction of cap-sensitive explosives deployed in underground coal mines. Delay blasting in underground coal
Jan 1, 1993
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"Journal: 100 Years / A TREATISE ON ORE AND STONE MINING by Sir Clement Le Neve FosterCharles Griffin & Company, London 6th edition, 1910"By Robert Hopler
BH Note: This price list stresses the point that the number six strength cap should be used with all high explosives. It’s interesting that duPont chose to continue to supply the lesser strength caps
Jan 1, 2011
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Blind Hole Raise Blasting at the Homestake MineBy Justus Deen, Paul V. Sterk
Through the 119 year history of the Homestake Mine various methods of raise mining have been used, these include conventional, bored, and drop raises. These raises provide passage for men and supplies
Jan 1, 1996
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Blind Hole Raise Blasting at the Homestake MineBy Justus Deen, Paul V. Sterk
Through the 119 year history of the Homestake Mine various methods of raise mining have been used, these include conventional, bored, and drop raises. These raises provide passage for men and supplies
Jan 1, 1996
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Wave Analysis and Determination of Interference Times to Minimize the Impact of VibrationsBy Carlos Pañura, Michael Geldres, Alejandro Rojas
In this current era of production in large volumes of surface mining, which demands the realization of large-scale blasting, the mining industry must deal with the impact of the vibrations generated b