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Electromagnetic Characterization of an Explosives Mixing Site at Blackie, AlbertaBy David G. Paton
"Electromagnetic surveys were conducted at the BXL Bulk Explosives Limited Mixing Plant andsurrounding area to characterize runoff from the site and possible impacts of salinity. The BXL Plant is loca
Jan 1, 1999
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Plug Blast for a Powerhouse Intake Using an Unusual TechniqueBy Terry Matts, Bruce Ripley, Clark Fletcher, Paul Rapp, Stan Holtby, Jim Dent
The Stave Falls Project of BC Hydro, situated 65km east of Vancouver, BC, Canada, involved the construction of a new two-unit 9OMW hydro-electric facility to replace an existing powerhouse. The final
Jan 1, 2000
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"Journal: 100 Years / Iron Mining in Minnesota By Charles E Van Barneveld, University of Minnesota, Minneapolis 912 The Mesabi (""Missabe"") RangeTHE MESABI (“MISSABE”) RANGE"By Charles E. Van Barneveld
RBH Note: the following item is a little different than the usual, in that it shows how explosives were used in the past to assist in putting down holes for iron ore prospecting on the early Mesabi Ra
Jan 1, 2013
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Instrumentation for Blast Monitoring in Underground MinesBy Francis Otuonye
Rock fragmentation by blasting still remains the most common and cost-effective method of excavating hard rock in mining and tunneling operations. During blasting, the dynamic stresses induced by the
Jan 1, 1992
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Digital Tunnel Blasting in a Sensitive Environment: N1 Porto Tunnel Project, PortugalBy Yannick Bleuzen, Manuel Joao, Frederic Monath, Miguel Quaresma
The N1 Porto tunnel project is a 650m segment of large-scale civil engineering plan to improve traffic flow between Porto’s downtown district, the Santo Antonio hospital district and the highway acces
Jan 1, 2005
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The Application of Ammonium Nitrate as an Improvised Explosive PrecursorBy Kirk Yeager
During the last several years the FBI has been involved with a detailed study of explosives designed to replicate formulations utilized world-wide by terrorists. In addition, numerous formulations , b
Jan 1, 2001
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Important Considerations When Selecting Rotary Blasthole Drills for High Altitude UseBy Lyall Workman
New mines are frequently located at altitudes above 3,000 meters (10,000 ft.). Drill selection must take the altitude effects into account, to insure high productivity and good bit life. In particular
Jan 1, 2007
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Blast Noise AnnoysBy David E. Siskind
Increased mineral consumption and environmental concern have caused much interest in potential damage and annoyance from ground vibration and airblast produced by production blasting in surface mines
Jan 1, 1977
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Design Criteria for In-Situ Mining of Hard Rock Ore DepositsBy M E. Hanson, K Chong, R H. Jacobson, S C. Way
To create conditions for economic rates of mineral recovery in a deep, hard rock mass, enhancement of naturally occurring permeability is necessary, and may be achieved through explosives detonated in
Jan 1, 1983
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Influence of Sample Rate on Underwater Blast Pressure MeasurementsBy Catherine T. Aimone-Martin, Elena Oana Jacobs, Brent Meins
Accurate pressure measurements during underwater detonations are critical for the protection of structures and mitigating impacts to fish and marine mammals. Current guidelines that limit underwater p
Jan 1, 2019
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Burden and Spacing Effect on Underground Limestone Fragmentation using Quantitative 3D ModelingBy Mark Spaniel
Computer 3D modeling to evaluate the potential underground blasting fragmentation performance based on rock within calculated damage radii along drillholes, as well as the burden distance from explosi
Feb 1, 2020
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A Reanalysis of Fragmentation Data from the Red Dog MineBy Finn Ouchterlony
"Recently detailed fragmentation data from blasts fired with electronic delay detonators (EDDs) in the Red Dog mine in Alaska were presented. They include a comparison with pyrotechnic detonators ford
Jan 1, 2012
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Gas and Dust Explosion Research at the UKERT LabBy Jaco van den Berg, Dr. Todor Petrov, Dr. Josh Calnan, Dr. Jhon Silva
This paper shows and reviews the similitudes and differences in explosions generated by high explosives and gas explosions, the reasons why gas explosions are difficult to replicate using high explosi
Feb 1, 2020
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Coal Recovery Improvement Using Stratablast™ at the Colowyo Coal CompanyBy Gary Anderson, J. P. Remi Proulx
Rio Tinto’s Colowyo Coal Mine produces 2.1 million tons per year in northwest Colorado. Colowyo uses the terrace mining method to recover up to seven coal seams ranging in thickness from 5 to 20 feet.
Jan 1, 2012
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Explosive Compaction of Foundation Soils for the Seismic Upgrade of the Seymour Falls DamBy Frank Huber, Ed Fulop, Neil Singh, Ron Elliott, Blair Gohl, Lewis Clarke
This paper covers the successful application of explosive compaction technology for the densification of the foundation soils for the seismic upgrade of the Seymour Falls Dam, Vancouver, BC. The origi
Jan 1, 2009
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The Importance of Internships for Explosives Engineering StudentsBy Paul Worsey, Gillian Worsey
The explosives industry is about to reach a critical turning point in human resources. The average age of employees of the largest US explosives company is over 50 and an estimated 5,000 engineers are
Jan 1, 2014
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Vibration and Airblast Standards for Underwater Blasting in VirginiaBy Gordon Matheson, Bill Yancey, David K. Miller
"Current regulatory limits for blast vibration and airblast control in Virginia do not specifically addressunderwater explosive testing. Underwater detonation of explosives generates an initial shock
Jan 1, 1999
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Generating Site Specific Blast Designs with State-of-the-Art Blast Monitoring Instrumentation and PC Based Analytical Techniques (da596259-c39e-4f49-b378-cc1a75a7ae1e)The common approach of designing blasts on a trial and error basis is quickly coming to an end. When utilizing the full scale blast environment, trial and error can quickly become cost prohibitive and
Jan 1, 1991
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Stope Blast Improvement by a New Blast Design in Leeville Underground MineBy Miquel Lamadrid, Changshow Sun, Chris Johnson
To reduce blasting overbreak and improve stope stability, several new blast designs were proposed for current and future stopes. Based on the analysis of the powder factor, and the extent of damage zo
Jan 1, 2008
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Prototype gauges for measuring detonation temperature and pressure of commercial explosivesBy A. Torrance
A better understanding of the detonation performance of an explosive charge can be gained by directly measuring pressure, temperature and velocity of detonation (VOD). This is particularly important w
Jan 1, 2011