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Modeling Reactive Sulfide Rock at the Red Dog MineBy Norman Paley, Zachary Pickett
The Red Dog Mine is a high-grade zinc-lead mine located in northwest Alaska which began operations in November 1989. In June 2014 the upper half of a charge in a trim shot in the Aqqaluk pit deflagrat
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Modeling Reactive Sulfide Rock at the Red Dog MineBy Norman Paley, Zachary Pickett
The Red Dog Mine is a high-grade zinc-lead mine located in northwest Alaska which began operations in November 1989. In June 2014 the upper half of a charge in a trim shot in the Aqqaluk pit deflagrat
Feb 1, 2020
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Modeling Rock Fracturing in Bench-Blasting ProblemsBy J S. Kuszmaul
"A computational model of rock blasting is being developed to examine the blasting problems associated with in situ oil shale processing. This model, however, will also be useful as a design tool for
Jan 1, 1987
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Modeling the Effect of Delay Scatter on Peak Particle Velocity of Blast Vibration Using a Multiple Seed Waveform Vibration ModelBy Mick Lownds, Ruilin Yang
The potential advantages of electronic detonators with accurate timing have been increasingly recognized by the blasting community. However, in comparative blasts the results with pyrotechnic timing a
Jan 1, 2011
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Modeling VOD and Initiation Effects on Blast Vibration PPV Using Nonlinear Charge Weight Scaling and Variable Time-window for Charge ElementsBy Mathias Jern, Ruilin Yang
A blast vibration model has been developed that simulates effects of almost all blast design parameters on the blast vibration peak particle velocity (PPV) from a production blast with multiple blasth
Jan 1, 2019
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Modeling Vs. Monitoring Blast Movement: The Cost of VariationBy Will Hunt, Darren Thornton
In March of 2013, an undisclosed gold mine (MINE X), located in the Western United States, performed blast movement monitoring of three blasts occurring in one of two active pits. Blast Movement Monit
Jan 1, 2014
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Modelling Complex Shock Tunnel for Shock Interaction and Transfer TestingBy Catherine Johnson, Barbara Rutter
The shock tunnel located at the Missouri University of Science and Technology Experimental Mine is 65 feet 9 inches (20.0406 m) in length. The tests performed inside of this tunnel are either arena te
Jan 1, 2018
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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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Modern Blast Engineering to Improve Mine ProfitabilityBy Josh Campbell
Modern blast engineering involves the use of modern technology to provide more efficient blasts. Through the use of improved measurement techniques more information can be obtained on many of the phys
Jan 1, 1998
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Modern Blast Vibration Monitoring, Modelling and Frequency Control at Tara Mines, IrelandBy Brendan O'Reilly, Outokumpu Zinc, Geoff J. Johnston, S Durucan
Historically vibration monitoring has dealt primarily with surface blasting or "near field" monitoring of underground blasts. The Situation at Tara Mines is different, blasting occurs up to 400m under
Jan 1, 1994
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Modern Blasting Practices in BrazilBy Benedicto Hadad Cintra
In an inflationary environment the need for reduced cost is a daily concern of all industries. The Du Pont do Brasil "Expanded Pattern" method has proven to be an extremely effective means of reducing
Jan 1, 1985
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Modern Underground Raise and Slot DesignBy N. Rouse
Underground raises and slots are a vital part of underground blasting operations. Raises and slots are vertical shafts or openings used for ventilation, ore passes, or creating voids in stopes. In the
Jan 1, 2024
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Modernizing Operations: Leveraging GIS in Drilling, Blasting and Quarry ApplicationsBy Dr. Anurag Agrawal, Steve Franklin, Clint Zimmerman, Elijah Williams
In a time when data has become a highly valued commodity within many mining and quarry operations, managing large amounts of current and historical information can be difficult. If not managed properl
Jan 21, 2025
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Modified Case Charge for Avalanche ControlBy Eduardo Lozano, Vilem Petr
This paper provides an overview of a new method for avalanche control using a high explosive charge placed at the avalanche runout zone: the case charge technique. This new avalanche control technique
Jan 1, 2018
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Modified Site Response Blasting: The Role of Rock Mechanics in Perimeter ControlThis paper is written in response to a request from the UTRC Committee on Perimeter Control Blasting. That Committee is conducting "follow-on" research on the selection of appropriate blasting designs
Jan 1, 1984
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Modifying Blasting Parameters: Reducing Vibration while Maintaining Maximum Delay ChargeBy Blenda Lopes, Rodolfo Matias, Vagner Paixão, Vinicius Leão VALE, Edivarde Sousa
Seismography is an extremely important subject in the context of rock blasting, especially in the current scenario, which involves the need for increased controls due to the growth of urban areas near
Jan 26, 2026
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Modular Ballistic Pendulum for Measurement of Impulse from Tamped ExplosivesBy Roland Alford
The ballistic pendulum is a well-established piece of test equipment originally developed for estimating the velocity of bullets and projectiles. When trying to understand the effects of different tam
Feb 6, 2023
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Molikpaq Blast Densification Project Sakhalin Island, RussiaBy Dave Otto, Ron Elliot, Ed Hatch
This paper is a summary of the work carried out by an international team of specialists in the successful explosive compaction of the sand fill core of the Molikpaq offshore oil production structure.
Jan 1, 2000
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Momentum Theory – A New Calculation of Blast Design and Assessment of Blast VibrationsBy Robert Boehnke, Bernd Mueller
Despite enormous efforts over the last decades there are still many unanswered questions with respect to calculation and modeling of the blast process using appropriate physical laws. Most calculation
Jan 1, 2003
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Momentum Transfer from Flowing Explosive Gases to Spherical Particles Durin g Computer Simulation of Blasting-Induced Rock MotionBy Dale S. Preece
A discrete element computer program, DMC (Distinct Motion Code), has been used for several years to simulate blasting-induced rock motion. Recent enhancements of DMC's capabilities have included addit
Jan 1, 1993