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Diameter-Effect Modelling in Unconfined Steady Non-Ideal DetonationsBy Paulo Couciero
Since explosives are the source of all energy used for rock blast fragmentation and heave, multidimensional effects in the detonation driving zone become essential to better describe the detonation pr
Jan 1, 2019
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48 Inch Production Blast Holes in OilsandsBy Michael McDougall
"Suncor Inc. Oilsands Group, Mining Operation in Northern Alberta, Canada, has beenblasting to loosen the oilsands to increase production and decrease maintenance of the hugebucketwheel excavators for
Jan 1, 1993
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Control Blasting at Sherman MineBy Peter N. Calder, John N. Tuomi
The development of a successful control blasting program for an open pit iron mine in hard jointed rock is described. The objectives and mechanics of control blasting are discussed. Design and impleme
Jan 1, 1980
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Dewatering Small Diameter Bore HolesBy R J. Hill
Blasters are well aware of the problems and expense faced when trying to load in wet bore holes; problems of poor coupling and poor density, as well as the expense of higher priced cartridge product.
Jan 1, 1986
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Fire Protection Provided by Detonator ContainersBy Lon D. Santis
The Code of Federal Regulations Title 30, Parts 56, 57, 75, and 77 require that detonators and explosives be separated by four inches of hardwood or equivalents when transported together in mines. Thi
Jan 1, 1997
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Journal: Blast Vibration and Seismograph Section / Post Blast Assessment Using Blasting Seismograph DataBy Kenneth Eltschlager
Post-blast assessment techniques using off-site data which includes location, seismograph and photographic data were discussed during the Blaster’s Weekend at this year’s ISEE Conference. Blast and pr
Jan 1, 2007
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Crusher-Compatible Fragmentation: A DMAIC-Based Approach to Blast OptimizationBy Evan Smart, Andrew Palangio, David Klingspor, Blessing Taiwo
This study presents a DMAIC-based approach to optimize blasting performance and achieve crusher-compatible fragmentation at the Walker-Severn Quarry in Ontario, Canada. By applying the Six Sigma DMAIC
Jan 26, 2026
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Expanded Rock Blast Modeling Capabilities of DMC_Blast, Including Buffer Blasting (8d3245d8-d11a-497d-a1ac-718f78cbeb14)By Dale S. Preece, J Paul Tidman, Stephen H. Chung
A discrete element computer program named DMC_BLAST (Distinct Motion Code) has been under development since 1987 for modeling rock blasting (Preece & Taylor, 1989). This program employs explicit time
Jan 1, 1997
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Evaluation of Environmental Effects Induced by Blasting Around a Waste Water Tunnel Project in High-Urbanized Area in TurkeyBy Ali Kahriman
This paper presents the results of ground vibration and air blast measurements from tunnel blasting activities during the construction of the Beylerbeyi-Kucuksu waste water tunnel under a residential
Jan 1, 2006
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Safe and Reliable Remote Blasting with Electronic Initiation SystemsBy Riaan Van Wyk, Gys Landman
In today’s mining environment the use of radio communications in the form of two-way radios, cellular phones and even automated mining, form a vital part of the daily operations of a mining site. The
Jan 1, 2011
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Managing Production Blasting Vibrations: A Machine Learning Based Prediction of PPV in Chilean Copper MinesBy J. Rafael Otaíza, Francisco Mardones
This work has addressed the problem of creating a predictive model of the maximum particle velocities in the rock mass (PPV). The model designed specifically can model the subsequent vibrations of bla
Jan 21, 2025
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Adjusting Blasting to Increase SAG Mill Throughput at the Red Dog MineBy N. Paley
An engineering project was undertaken at the Cominco Alaska Red Dog Mine to determine the extent that Semi-Autogenous Grinding (SAG) mill throughput could be increased by blasting differently. The Jul
Jan 1, 2001
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Evolution of the AvalauncherBy John Brennan
The Avalauncher has been an integral tool for avalanche mitigation work for close to 50 years. With their ability to place a kilogram of high explosives up to two thousand meters away, they routinely
Jan 1, 2009
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Developing Safety in United Kingdom Drilling OperationsBy Rob Farnfield, Ben Williams, Bob Woolley
This paper outlines how drilling safety standards are being driven forward in the United Kingdom’s surface mining and quarrying industry with developments in equipment, procedures and competence.
Jan 1, 2010
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Controlled Sequential BlastingBy E Emery Jr Gray
A need for more delay periods other than those normally manufactured throughout the explosives industry rarely occurs. This paper will discuss one such incident from an analytical view through practic
Jan 1, 1976
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Transient Vibration and Complaints an Emperical Study of Coal Mine DetonationBy Gerald R. Coonan
Laboratory research is being conducted to substantiate suggested levels for voluntary standards on human response to transient vibration. The application of those findings to actual field conditions,
Jan 1, 1982
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Precision Blasting in the Nation's Captial: A Case History Showing the Use of a Seismograph as a Tool to Control Blasting VariablesBy Bill Rose, Alan Foster
This paper will outline blasting as undertaken at the Flour Mill project in the Georgetown area of Washington, D.C. It will discuss the vibration and blasting problems found in blasting in high risk a
Jan 1, 1979
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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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A Coyote Blast at Rhone-Poulenc's Maiden Rock Silica QuarryBy John C. Adams, Darrel D. Porter
After conventional drill and shoot methods were determined to be unfeasible due the fractured nature of the ground, a "coyote" blast was designed to produce 250,000 tons of rock from Rhone-Poulenc's M
Jan 1, 1993
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Detonation Velocity of Precompressed Emulsion ExplosivesBy Fumihiko Sumiya, Yukio Kato, Yoshikazu Hirosaki
Secluential blasting is one of the most popular methods in blasting. tiowever, it is well known that an emulsion explosive can be dead-pressed by dynamic pressure generated by the previous detonation.
Jan 1, 2002