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The Use of Laser Profiling, High Speed Cameras and Videography to Analyze Blasting Results in Underground MiningBy Bruce Notthup
Using a Three Dimensional Laser Profiler, persomrel from Austin Powder were able to determine drilling patterns for use in underground mine Room and Pillar blasting operations, The faces had got out o
Jan 1, 1994
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Optimization of Development Drilling and Blasting in an Underground MineBy B Mohanty, G Ludwig
A thorough assessment of development drilling and blasting practice was carried out at two underground mines at INCO operations in Thompson, Manitoba. The study showed that significant improvement in
Jan 1, 1998
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Prediction of the Ground Vibration Attenuation Induced by Blasting for the Different Rock MassesBy A. Karadogan, G. Tuncer, A. Kahriman, S. Gorgun
This paper presents the results of ground vibration measurements induced by blasting operations at five different sites located close to the residential areas. Within the scope of this study, ground v
Jan 1, 2003
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Using Vibration Prediction to Reduce Blasting Costs and Complaints (c2b05a63-1c96-45ce-a036-acc1a0a37215)By Thomas Leonard, Philip R. Berger, Bryan E. Papillon
Bardon Trimount Inc., a large producer of aggregate, crushed stone, and concrete, was experiencing significant public opposition to its five quarries in the Boston area. It was believed by the authors
Jan 1, 1996
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Design of Large-Scale Choked Destress Blasts in Mine Pillars Using the Empirical Destressability Index MethodologyBy Richard Brummer, John Hadjigeorgiou, Patrick Andrieux
Some of the major challenges associated with underground mining at depth and/or under high extraction ratios are related to the resulting high stress levels, which can lead to the failure and collapse
Jan 1, 2012
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A Study of Misfires in MiningBy Larry R. Fletcher
A misfire results when explosives fail to detonate as planned during a mine blast. Accidental detonation of misfires is a frequent cause of personal injury, equipment damage, and lost production. In a
Jan 1, 1983
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Micro Economic Forces in the Mining and Explosives IndustriesBy David P. Reddick
Economics is a social science dealing with the allocation of scarce resources. In modern times the “science” was identified by Adam Smith in his book, The Wealth of Nations, written in 1776. Mr.Smith,
Jan 1, 1992
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Using an Electronic Detonator System and Expanded Blast Patterns to Prevent Sympathetic Detonation at Powder River Basin Coal MineBy Joseph Haid, om, Rio Yang, Kelly Fleetwood
Some coal mining operations in the Powder River Basin are currently observing a number of blast holes detonating sympathetically within their cast blasts. Sympathetic detonation can cause poor cast re
Jan 1, 2005
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Vibration Controlled Blast Timing Optimization Using the Seed Waveform Modeling ConceptBy Frank Sames
Ground vibration levels are generally predicted using equations such as the USBM equation implementing the scaled distance concept and describing geological and blast design parameters in a ground tra
Jan 1, 1995
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Controlled Blasting in a Historic Mining TownBy John Yenter
"Unique blasting problems during reconstruction and expansion of 100 year old buildings toaccommodate gambling. Located on steep mountainous terrain and linked by narrowroadways, the towns of Central
Jan 1, 1993
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Standards, Environmental Regulations and Consequences for Tunnel Blasting Projects in Urban Areas in SwedenBy Rundqvist
The best method to minimise disturbances from traffic to the neighbourhood and in Urban is probably to go underground. For obvious reasons this will cause vibrations, noise and other environmental eff
Jan 1, 2001
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Swedish Standards for Ground Vibrations and AirblastBy Roger Holmberg, Donald Jonson
The Swedish Standard SS 460 48 66, “Vibration and shock - guidance levels for blasting induced vibration limits”, is based on more than 50 years of experience from blasting close to structures and tun
Jan 1, 2005
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Description of Damage Constitutive Model as Documented in Pronto3D Manual 3/89By Billy J. Thorne
The damage model in PRONTO simulates the dynamic fracture behavior of brittle rock. It is based on work started by Kipp and Grady, [lg] continued by Taylor, Chcn and Kuszmaul [I91 [20] and recently.mo
Jan 1, 1989
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Blasting to the Rescue, Underwater Concrete Bridge-Pier DemolitionBy Jerry Wallace
A highway bridge demolition project to allow shipping access to a new container port in Puget Sound ran into trouble when contract-stipulated mechanical means of demolition failed. Blasting was then e
Jan 1, 1999
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Trend of Bulk Explosives in IndiaBy Suresh Menon
The explosive industry in India has passed through various stages - from a period of total dependency to a period of self sufficiency and now, is saddled with large spare capacity. The last decade and
Jan 1, 1998
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Back to the Basics: Electronic DetonatorsBy Larry Schneider
In recent years, many individuals looking into the future of the blasting industry have predicted that the most likely next technological breakthrough would be the use of high precision, digitally con
Jan 1, 2006
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The Seismic Visibility of Mining and Its Implications with Regard to the Comprehensive Test Ban TreatyBy Frank Chiappetta, Karl Zipf, Robert Hopler, Brian Stump, Francois Heuze, Bob Martin, Vindell Hsu, William Walter, Craig Pearson
The Comprehensive Test Ban Treaty (CTBT) was accepted for signature at the United ,Nations in September of 1996. It ‘now awaits ratification by its signatories, ~including the United States. After the
Jan 1, 1998
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Blasting at Dacotah CementBy Lyle Dennis
Emphasis on increased production while maintaining rigid quality standards has necessitated a change in blasting technology at Dacotah Cement's limestone and gypsum quarries. The following three metho
Jan 1, 1996
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Effects of Decoupling and Simultaneous Detonation on Blast VibrationsBy Rodney D. Lamond
The need for blast vibration monitoring can be attributed to a combination of three factors: Structural damage, Blast design and Human annoyance. Traditionally, vibration damage criteria are prescribe
Jan 1, 1995
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Standard of Care for Blasting NegligenceBy Timothy Stark
Blasters are usually strictly liable for injury or damage caused by flyrock (trespassory invasion) and blast-induced vibrations (non-trespassory invasion). The application of strict liability to non-t
Jan 1, 2003