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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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Back to the Basics; Nonelectric Initiation Shock Tube Systems Part 2: Safety ConsiderationsBy Larry Schneider
"0 ne of the incentives that led to the development of non-electric shock tube initiation systems was the desire within the industry to improve detonator safety. And to the extent that nonelectric ini
Jan 1, 1995
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Modelling Non-Ideal Explosives with Detonation Shock Dynamics (DSD) TheoryBy Lars Arne Granlund
Due to the coarse structure of mining explosives, one has to model a finite reaction zone,contrary to C-J calculations, describing their detonations, i.e they become dependent of diameter and confinem
Jan 1, 1995
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A Revolutionary, New Microballoon Ammonium Nitrate Prill that Increases Explosive Performance Through Controlled PorositBy Attie J. Goosen, William L. Spiteri
Although the physical characteristics of ANFO made from porous prilled ammonium nitrate (PPAN) have been altered by the addition of crystal modifiers, the optimisation of prilling processes and the ad
Jan 1, 1995
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Response of a High-Pressure Natural Gas Pipeline to Coal Mine BlastsBy Ed Clah, Catherine Aimone-Martin
The vibration response of a 30 in. diameter high-pressure (845 psi) natural gas pipeline to 11 coal mine blasts was measured. The X-52 steel pipeline was buried 7 ft. below the ground surface. Ground
Jan 1, 2003
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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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Emulstion Explosives TechnologyBy David G. Borg
Emulsions explosives, like slurries or water gels, are water based explosives. Emulsions were first introduced as a packaged blasting agent in the late sixties. Since then, many new variations have be
Jan 1, 1994
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Underground Remote Firing SystemBy Tom Paynter
In an underground mining environment, the primary method of firing a blast is using a combination of an electric detonator and a detonating cord to initiate the Nonelectric detonators. This method has
Jan 1, 2017
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Prediction of Detonation ParametersBy P D. Katsabanis
"This chapter describes the principles for the derivation of the equations for a detonation wave.. Theimportance of the equation of state for the detonation products is demonstrated and commonly used
Jan 1, 1992
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New Technologies in Electronic Blasting For Enhanced Safety and ProductivityBy Raphael Trousselle, William Reisz
The blasting industry is now well into its second decade of commercial use of electronic detonators. As an increasing number of blasters are introduced to the technology, the benefits are becoming mor
Jan 1, 2012
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Seismograph Calibration - What You Should KnowBy Bob Turnbull
The dictionary definition of calibration is: to determine by measurement or comparison with a standard, the corre c t value for each scale reading on a device.1 As a consultant or blast contractor, yo
Jan 1, 2004
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Back to Basics in Drilling SafetyBy John Brown
Let’s talk about things that you, the driIl boss, the pit boss and the driller can do to eliminate the trend in drilling related accidents that have come to plague our industry in recent years. My pap
Jan 1, 2000
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Quantifying Shovel Performance Through Blast Pattern BoundariesBy K. Taylor
In surface coal mining, the performance of a shovel through blasted muck is one of the key performance indicators of the blast. Historically, performance has been measured qualitatively based on opera
Jan 1, 2024
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Ontario Hydra T.G.S. Chimney Demolition Thunder Bay, Ontario, CanadaBy Ray Jambakhsh, Gabrielle Bourget
In the summer of 1998, Ontario Hydro awarded a contract to demolish an obsolete and inefficient chimney by blasting. The Ontario Hydro Thunder Bay Thermal Generating Station (T.G.S.), is a fully opera
Jan 1, 2000
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Optimization of Blasting Pattern in an Underground Coal Mine for Maximum Production with Minimum Roof DisturbanceBy R. Singh, M. Roy, D. Singh
Success of a blasting pattern in Blasting-off-the-solid (BOS) in Bord (Room) & Pillar method of coal mining is judged by the percentage of pull achieved vis-à-vis the yield of coal produced in a blast
Jan 1, 2003
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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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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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Blast Vibrations: A Critical Component of Dilution Control at an Underground MineBlast vibration analysis under relatively near-field conditions has been carried out in a narrow-vein underground operation. The objective was to characterize the vibration signal (particle accelerati
Jan 1, 2003
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The Benefits of Electronic Blasting Systems for Use in UG Mass Pillar Blast DesignBy Felix Torres
CVRD is one of the largest mining companies in the world. Adoption of new technology and improving operational efficiency are top company priorities. Initiatives in these areas have driven continuous
Jan 1, 2003
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Highway Lane Rental Requirement Compromises Blast Site Safety and SecurityBy Harry L. Siebert
A major Arizona highway project is jeopardizing site safety and security because of the lane rental policy. One million cubic yards of rock must be fragmented to provide two additional lanes parallel
Jan 1, 1997