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Blast Simulation Surface and Underground with the SABREX Model (f3efe068-6266-482f-a4f6-907b809beffa)By G K. Jorkenson
The SABREX Blast Modelling Program was developed joinlly by the companies of the ICI Explosives Group. of which C-I-L Inc. is a member. SABREX (Scientific Approach to Breaking Rock with Explosives) is
Jan 1, 1989
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Understanding Toxic Fumes from Mining ExplosivesBy Michael S. Wieland
"Toxic fumes cause fatal andnonfatal incidents in underground mining, where the working environment tends to trap the fumes, hindering the restoration of non-harmful conditions. Workers can underestim
Jan 1, 1997
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Masterblaster Blasting Management SystemBy Chris Uys, Johan Labuschagne
Sishen Iron Ore Mine, located in the Northern Cape, is an open cast mine excavating approximately 100 million tons rock to produce 25 million tons of high grade haematite ore per annum. The size of th
Jan 1, 1997
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"Journal: Evaluating and Managing Blasting Risk Part II"By Gordon Revey
The challenge of managing blasting risk, types of risk, public perception, and a system for managing risk were covered in the first part of this article in the May/June 2000 issue of the Journal of Ex
Jan 1, 2001
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Wall Control Blasting Practices at Kisladag Gold MineBy Ekin Güngor, Berkant Ozdemir, Erkan Bayrak, Serdar Ergün, Sedat Esen
"This paper presents the final wall blasting practices at Eldorado Kisladag Gold Mine in Turkey. Benchmark and improved wall control designs were explained in detail. Kisladag Mine has been implementi
Jan 1, 2017
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Pre-Splitting With The New AIRDEK TechniqueBy David G. Borg, John Bussey
The new AIRDEK (tm) technique for pre-splitting in surface coal mines produces highwall conditions that have greater safety with lower costs for explosives, labor, and drilling. Successful application
Jan 1, 1988
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Journal: Near Field Vibration Monitoring for Rock Mass Damage Control Tala Hydroelectric Project, Bhutan IndiaBy H. Venkatesh, Balachander R.
This article discusses the method that was adopted for controlling damage to rock mass while excavating an underground powerhouse cavern at Tala Hydroelectric Project. It discusses in detail the near
Jan 1, 2006
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Discovery, Analysis, and Elimination of Instantaneous Misfires in Underground Production BlastsBy Norman Disley, David B. Counter, Lionel Hebert
Misfires in underground and surface production blasts can be costly. Costs can arise from loss of resource, production interruptions, having to redrill or otherwise refire the blast (a hazardous proce
Jan 1, 1996
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Demolition of the Milwaukee Railroad Trestle Pier, Lind, WABy William C. B. Gates
Demolition blasting next to an active railroad can be very challenging because of track safety, blasting vibrations, potential track fouling by blast debris, and short work windows on a live track. Re
Jan 1, 2016
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Applications of GPS and Equipment Monitoring Technology to Blasting Operations in Surface MiningThe objective of current efforts by AQUILA Mining Systems Ltd. is the continued development of computer-based systems and techniques to automatically process and interpret monitored performance data f
Jan 1, 1995
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Estimation of Rock Fragmentation in Bench Blasting Using Numerical SimulationBy Sang Ho Cho, Masaji Kato, Masaaki Yamamoto, Masaaki Nishi, Katsuhiko Kaneko
This paper presents a numerical simulation method to predict rock fragmentation and to verify a fracture mechanism by bench blasting. The rock fragmentation, which has been used as a means of the inde
Jan 1, 2002
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Near-field Blast Vibration Response of Sensitive PipelinesBy C. Sawmliana, P. Pal Roy
Near-field blast vibration response of restrained pipelines either buried or exposed was studied during rock excavations at sensitive locations for Stage-II (4x500 MW) commissioning work in a super th
Jan 1, 2001
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Journal: Transportation of Explosives in Canada Introduction to Emergency Response Assistance PlansBy Josee Boudreau
Transport Canada has regulatory requirements that pertain to the transportation of explosives. An important component includes the requirement for an approved Emergency Response Assistance Plan (ERAP)
Jan 1, 2010
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Applying up-to-date Blasting Technology and Mine to Mill Concept in QuarriesBy Robert McClure, Frederic Leclercq, Ricardo Chavez
With significant vibration control and fragmentation challenges facing them, the CBS quarry (department of the Nord) successfully integrated a technical partner and mine to mill optimisation to deal w
Jan 1, 2007
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Concepts for Better BlastingBy William Reisz
Over the years as surface mining operations have become more sophisticated, angle drilling has become a more popular blast design technique, especially in areas where overburden and stripping ratios h
Jan 1, 2002
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Novel Impulse Instrumentation for Buried Explosive ChargesBy Phillip R. Mulligan, Kevin Gantz, Aaron J. Ward, allen shirley, Sean Treadway
Understanding the impulse transferred into a structure by the coupled two-phase loading produced by an explosive charge buried in soil is of interest for various applications. The most common impulse
Jan 1, 2016
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Analysis of Sympathetic Detonation in Detonating CordBy Abigail Styer, Paul Holmgren, Josh Calnan
Detonating cord is a staple of the explosives industry, used widely in the civil and defense industries. Detonating cord is a thin, flexible plastic tube filled with pentaerythritol tetranitrate (PETN
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Development of Light ANFOBy Yasunori Kosaka, Junya Tokita, Aramaki Shosaku, Inoue Junji
Light ANFO that satisfies blasters and customers who want to reduce the amount of explosive consumption without changing blasting effects and designs and passes Cap sensitivity test regulated by law.
Jan 1, 2002
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Understanding the Hazard Potentials of Toxic FumesBy Michael S. Wieland
Toxic fumes cause fatal and nonfatal incidents in underground mining, where the working environment tends to trap the fumes, hindering the restoration of nonharmful conditions. Workers can underestima
Jan 1, 1998
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Optimizing the Initiation Position of Geophysical Exploration ChargesBy E. McCullough, D. Preece, M. Ortel
Geophysical explosive charges are used in mineral resource exploration. They are detonated subsurface and radiate sonic waves into ground monitors, which detect the vibration waves and their interacti
Jan 1, 2013