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Calculation of Rock Motion During Bench BlastingBy Elaine Gorham-Bergeron
CAROM is a distinct element, dynamic code developed at Sandia National Laboratories to calculate the motion of rock fragments during blasting.[1] It has recently been improved to incorporate a mechani
Jan 1, 1987
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The Odd Challenges of Backcountry Trail Blasting (1b065404-a403-4c07-96f7-7a9b8e26646e)By Miie Shields, Ed Billington
Trail blasters for the National Park Service (NPS) live and work in remote mountain terrain throughout the western states, where any support or resupply may be sporadic and ditlicult and mountain weat
Jan 1, 2002
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Blasting in TunnelingBy Midori Sakamoto, Nobuaki Sakuma, Tsuyoshi Murashita
Recently, tunnel blasting works near the residential area and existing building are increasing and environmental problems caused by vibration have become serious public concern. In order to solve thes
Jan 1, 1998
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Massive Blasting in Chuquicamata MineBy Sergio Segovia Parra, Victor Hernan Sheen Uriol
This contribution of the concept of mass blasting both closing and production allows breaking paradigms, to limit the number of tons to thunder. The areas of geotechnical different mining large mining
Jan 1, 2015
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Computer Cast Blast ModellingBy Mike McGill, Stephen Chung, Dale S. Preece
Cast blasting can be designed to utilize explosive energy effectively and economically for coal mining operations to remove overburden material. The more overburden removed by explosives, the less bla
Jan 1, 1994
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Study of Blast Over-pressure from Intentional MEC Detonations Using Double Sandbag MitigationBy Daniel Haines, Benjamin Konshak, Michelle Crull
American Technologies Incorporated Group (ATI) is the prime contractor with U.S. Army Corps of Engineers, Huntsville Center (CEHNC) in the Honolulu District for the removal of munitions and explosives
Jan 1, 2008
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Burden Velocity Measurement in Cast Blasting Operations at Mount Thorley Mine Using POWERWAVE Face Velocity RadarBy A T. Spathis, J J. Felice, W Klass
Cast blasting has become one of the most efficient ways to move waste rock in open cut coal mining. It is used at Mount Thorley Mine in conjunction with a dragline to move some of the overburden onto
Jan 1, 1992
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Maumee Quarry Drilling and Blasting ChallengesBy Lee Wehner, Daryl Kin, John Bolger
The Maumee Quarry, located in the city of Maumee, Ohio, has large in-situ cavities, ranging in size from 3 ft (.91 m) in diameter to over 15 ft (4.5 m). The drill/blast team challenge is to drill, loa
Jan 1, 2007
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Sealine Trenching with Explosive TechnologyBy John J. Ridgeway
Habits take us where we were yesterday and attitudes tend to keep us there. Until recently, little had been accomplished to improve conventional explosive energy for use offshore. But with the special
Jan 1, 1977
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The Development of Redundant Nonelectric Delay Systems for Surface Coal MiningBy Gary L. Self, Ronnie Daniel
With the advent of large scale blasts utilizing overburden casting techniques, it was imperative that an ultra reliable surface delay system be developed. Shock tube and detonating cord surface delay
Jan 1, 1989
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Optimize Fragmentation with Shovel-Mounted Image Analysis SystemsBy Peter Cameron, Tom BoBo
Comminution, being the energy intensive part of a mining operation receives much scrutiny by cost controllers, CEO’s, investors and others as the mining industry goes “back to basics” to reverse the d
Jan 1, 2019
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Safety Considerations when Using Short Lead, (5 cm), Magnadet DetonatorsBy Lon D. Santis
This paper reports on an evaluation of the safety characteristics of short lead, 5 centimeter (cm), Magnadet1 detonators. The Magnadet initiation system uses magnetic induction principles to transfer
Jan 1, 1992
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Blasting Near New Concrete – 3 Case HistoriesBy G. F. Revey
When rock blasting occurs near new concrete of varying age, engineers representing project owners often express concern that vibration from the blasting will crack nearby concrete. Regulations and/or
Jan 1, 2006
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Non-Conventional Performance Characterization of NonelBy L. Russell Payne
The use of shock tube in the blasting industry is relatively well characterized and understood within the realms to which it is used. Non-conventional uses of shock tube within the EOD and the Aerospa
Jan 1, 2008
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Electronic Blasting & Blasting Management - Past, Present & FutureBy Frank Hammelmann, Peter Reinders
This paper briefly describes the past history of blast management. A modern blast management suite is then presented which demonstrates the current capability of the functional link between an electro
Jan 1, 2004
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Laboratory Study on Prevention Method of Detonation Failure Caused by Channel EffectBy Fumihiko Sumiya, Kunihisa Katsuyama, Yuji Ogata, Yukio Kato, Yuji Wada, Yoshikazu Hirosaki
Smooth blasting technique is widely applied for tunneling road or railway construction in Japan. However, smooth blasting technique often causes problem related to detonation failure in explosive colu
Jan 1, 2003
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Reactive Ground Blast Management in a South Africa Open Pit Manganese MineBy Grant Small, Deon Pieterse
Reactive ground conditions at an open pit manganese mine in the Northern Cape of South Africa resulted in an unexpected detonation.
Feb 1, 2020
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Pressure Effects on Density of Small Diameter ExplosivesBy R Deshaise, B Mbhanty
The importance of controlling density of commercial explosives, and the various means to achieve it are described. m e field conditions responsible for density changes during blasting and their effect
Jan 1, 1989
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Electronic Detonators - Do They Add Value?By TA Louw, Dr CM Lownds
In an era where profits are constantly being eroded, mines are looking towards technology developments to assist them in solving mining problems and reducing mining costs. An emerging technology that
Jan 1, 2004
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Reinforced Concrete Structure Failure Mechanisms Resulting from Explosively-Induced OverpressureBy Dale Preece, Vanessa Berg
This paper presents a two-pronged vulnerability analysis approach for treating minimally reinforced concrete (RC) structures subjected to explosive events. This work was motivated by a heightened inte
Jan 1, 2004