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High.Speed 2D Analysis Program Version 1.30By Bruce Vandenberg, R F. Chiappetta
"The High Speed 2D Analysis program allows the user to bring in data from several different sources. Of course, keyboard entry is included as a source. Other data is inputted through the serial port (
Jan 1, 1989
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Discrete Element Modeling of Rock Blasting in Benches, with Joints and Bedding Planes - Initial DevelopmentBy Dale S. Preece
A Discrete element computer program named DMC @istinct Motion Code) has been developed for modeling rock blasting. This program employs explicit time integration and uses spherical or cylindrical elem
Jan 1, 1995
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Blast Designs and Instant Diagnostics Using the SVC1000 Digital, High-Speed Smart Video Camera SystemBy Bruce Vandenberg, Andy Bartfay-Szabo, Steve Conway
Recent advances in solid-state, field portable, fast framing video camera systems and PC based frame capture hardware now allow blast imaging up to 500 frames per second. Up to 8 seconds of data can b
Jan 1, 1995
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Human Response to Ground Vibration and Air-Overpressure Due to Blasting in Opencast Non-Coal Mines in India: A Case StudyBy M. Ramulu, A. K. Chakraborty, P. B. Sahu, C. Bandopadhyay, P. B. Choudhury
Human response to blast induced vibration and air overpressure is an unsolved problem that accompanies excavation process in mining. Pre-assessment and understanding of annoyance due to production bla
Jan 1, 2004
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Is that Normal? Fundamental Observations for Best Practive Blast Vibration AnaysisBy W. J. Birch, A. Wetherelt
The scaled-distance model for blast vibration analysis is the standard method employed throughout the surface mining and quarrying industries to model Peak Particle Velocity (PPV) data. Although empir
Jan 1, 2005
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Vibration Reduction Mechanism and Experiment of Stepped V-cut Millisecond BlastingBy Shi Hongchao, Zou Zou Xinkuan, Zhang Jichun
As drilling and blasting is carried out in an urban tunnel, which is adjacent to an existing building or structure, the balance between blasting-induced vibration reduction and drivage efficiency is a
Jan 1, 2015
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Why Electronic Detonators Practical Demonstration with DSL2 & DSL3 SystemsBy Thierry Bernard, Phillipe Cappello, Jean Marc Laboz
"The main reasons of the emergence of electronic detonators are linked to:-Local urban development close to mining operation sites-Environment regulations"
Jan 1, 1995
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The Effect of Fragmentation on Loader ProductivityBy Michael D. McGill
The effect of fragmentation size distribution as it relates to front end loader productivity was evaluated by comparing loader cycle times to fragmentation size of the shot rock. At Gold Mine in Sout
Jan 1, 1994
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Blasting in The New Millennium - Misfires The Basics Never ChangeBy Steve Dillingham
Whenever misfired holes or portions of misfired holes remain after a blast is fired, a hazardous situation exists until the unfired explosive materials have been disposed of properly. Yet, there are s
Jan 1, 2004
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Practical Applications and Blast Designs with Nonelectric Initiation SystemsBy Tom Treleaven
Several nonelectric blast initiation systems have been developed since the mid 1970's. Until that time, most blasts were initiated either electrically with electric blasting caps or nonelectrically wi
Jan 1, 1991
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Pressure Measurements in a Low Density ExplosiveBy Guillermo Silva, P. Katsabanis
The conventional approach to design wall control blasts relies on the borehole pressure as the most important explosive parameter. Borehole pressure is intimately linked to explosion pressure, which i
Jan 1, 2003
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Journal: Safety Talk / Out With The Old and In With the New / It’s Time for a Little Spring-CleaningBy Paul Downing
When was the last time the documents and paperwork were cleaned out of the glove boxes, door pockets, under the seats and above the visors in your company vehicles? Insurance cards that expired three
Jan 1, 2008
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An Analysis of Blasting Accidents in Mining OperationsBy Harry Verakis, Thomas Lobb
Over the past decade, approximately 5.1 billion pounds of explosives were used annually, on average, in the United States. Most of the explosives were used by the mining industry. The coal mining indu
Jan 1, 2003
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The Use of High Explosives to Conduct a Fisheries Survey at a Nemdway Weir Field on the Middle Mississippi RiverBy Michael Peterson, Robert Davinroy, Robert Rapp, Gregory Hempen, David Herzog, Thomas Keevin
Fish sampling in a deep-water, high velocity, environment is extremely difficult. Conventional techniques such as electro-fishing and netting have been limited to depths generally less than 7 meters (
Jan 1, 2002
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Blasting a Tunnel Through Folsom DamBy Gregg A. Scott, Gordon F. Revey
"The Folsom Dam is a 340-foot-high concrete gravity dam with embankment wing dams located on the American River about 20 miles northeast of Sacramento, California. Folsom Dam is operated andmaintained
Jan 1, 1999
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Vibration Characteristics on Surface and in Underground Openings from Opencast Mine BlastingBy M. Roy
Safety and stability of underground coal mine workings are always in danger when opencast mines are operating in close proximity. A study was conducted to investigate the level of vibration generated
Jan 1, 2007
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Challenges for Mining Explosion Identification Under a Comprehensive Test Ban TreatyBy Brian W. Stump
Seismic networks provide the primary technology for monitoring compliance with a comprehensive test ban treaty. The design goal of the network is the identification of possible clandestine explosions
Jan 1, 1995
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The Literature of Explosives and BlastingBy Robert Hopler
The literature of explosives and blasting consists of a great variety of printed materials. These materials include technical papers, books, and articles by individuals and organizations; manufacturer
Jan 1, 2000
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Laser Initiation of Explosives (For Use in Conventional Electric, Nonelectric and Electronic Detonators)By Don Novotny, Dana Spencer
In this workshop our intent is quite simple; that is that we will introduce a relatively new technology that may have applications in blasting applications. This technology is the laser initiation of
Jan 1, 1994
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Laser Based Slapper Detonator: The Next GenerationBy Dennis L. Paisley, Thomas P. Turner
Laser slapper detonators are the next generation detonator under development at the Detonations Systems Group at Los Alamos National Laboratory and function very similarly to an electrical slapper. A
Jan 1, 1994