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Underwater Plug Blast at Manic-C Hydro-Electric ProjectBy P Albert
A wedge-shaped underwater rock plug has to be blasted in order to tap the reservoir and furnish water to a new underground powerhouse at Manicouagan-5. The paper deals with the design and engineering
Jan 1, 1984
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A New Detonating Cord for Reducing Unwanted Damage in Controlled BlastingBy Thomas Bakley, Rob Lee, Jay Rodgers
The present state of technology in Controlled Blasting uses standard explosives’ products to create a crack between holes along a desired line of break. The resulting pre-split, post-shear or cut line
Jan 1, 2001
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Characterizing Emissions Produced by Burning Chlorinated Energetic MaterialsBy James L. Wilcox, Douglass P. Bacon
As the U.S. Environmental Protection Agency (USEPA) and state regulators increase the stringency and enforcement of regulations concerning emissions produced by open-air detonation of energetic materi
Jan 1, 1996
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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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Careful Blasting (125,000 cu.m) for a Shopping Centre in Downtown HelsinkiBy R Vuolio, B A. Jonsson
In the center of Helsinki - capital of Finland - extensive blasting operations were carried out during the years 1982 - 84. At the corner of the streets Mannerheimintie and Simonkatu - in the Forum bl
Jan 1, 1985
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Mass Blast of Pillars Using New Blasting TechniqueBy Ingvar Hansson, Bjorn A. Jonsson, Bernt Larsson
In the Kiruna Research Mine, Sweden, four large open stopes have been mined, leaving intermediate piIlars and crown pillars. At the final stage of mining mass blasting of the crown pillars above two o
Jan 1, 1986
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Additive Manufacturing of Liners for Conical Shaped Charges: Practicality and PerformanceBy Phillip R. Mulligan, Catherine Johnson, Edward Kinzel, Cody Lough, Jason Ho
A shaped charge is an explosive device used to focus detonation energy in a desired direction. Shaped charges have numerous applications in several industries such as oil extraction, weaponry and demo
Jan 1, 2019
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Breaking New Ground: Deflagrating Cartridges for Urban Tunneling at Grand CentralBy Joseph A. Meyers, Michael D. Stokes
This paper will focus on the use of Deflagrating Cartridges for tunnel excavation in Midtown Manhattan at Grand Central and 42nd Street Station, where the excavation has challenges due to the proximit
Jan 21, 2025
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Measurement of the Vibration Delay Window for an Iron-Ore MineBy Maria Sullivan
There have been many papers and articles presented over the last 60 years questioning the relevance of the 8-millisecond blasting delay window as an ‘Industry rule of thumb’. The concept of using dela
Feb 6, 2023
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A New Tool for Managing Risk Associated with Commercial Explosives OperationsBy Lon Santis, David Leidel, John Tatom, Meredith Hardwick
This paper describes the development and methodology of the Institute of Makers of Explosives’ Safety Analysis for Risk (IMESAFR), a risk analysis software program for commercial explosives operations
Jan 1, 2007
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Attenuation of Blasting Vibrations in South Florida, Part IIBy Greg Mclellan, Mark Johnson, John Pepper
In this paper, the measured vibrations are plotted in terms of the individual PPV components versus Scaled Distance (SD) on logarithmic scales. The maximum PPV is pIotted on a separate graph and equat
Jan 1, 2001
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Automated Explosives Inventory Database SystemBy Paul Worsey, Larry Kenchel, David Randall, Mark Schmidt
The University of Missouri-Rolla (UMR) has historically maintained a manual, paper inventory of explosives stored and used at the university. Although this system was accurate for inventory control an
Jan 1, 2001
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A Case Study of Blast Damage Evaluation in Open Stope Mining at Kidd Creek MinesBy Hung Tran, Qian Liu, Patrick Andrieux, Dave Counter
Blast damage in open stope mining has been an important concern in controlling ore dilution. Severe damage to the surrounding rock mass can result in the caving of waste rock and/or backfill materials
Jan 1, 1998
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A Case Study of Full-Face Blasting in Highway TunnellBy Changa-Ha Ryu, Hae-Moon Choi, Sang-Don Lee
The rock mass to be excavated is classified using data obtained from the initial site investigation, and the design of excavation and support is then made based on the rock class. Rock classification
Jan 1, 2005
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Simple Technique for Selecting Explosives based on Explosive/Rock Acoustic ImpedanceBy Alejandro Ferrada Vergara, María Jesús Barros Godoy
The need for a basic method for selecting explosives based on rock mass or intact rock properties for mining and construction arises from the limited consideration given to these factors when choosing
Jan 21, 2025
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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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Blasting Databases: A Unique Method for Saving and Retrieving Blasting DataBy Calvin J. Konya
Precision Blasting has designed easy to use, yet, highly powerful databases for storage and retrieval of blasting data. Three different Databases are available for blasting data management. The Vibrat
Jan 1, 1991
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Journal: Anhydrous Ammonia and Ammonium Nitrate Production Raw Materials for BlastingBy Ken Tunnel
In the spring of 2005, the Lake Superior Chapter of the ISEE invited me to speak about raw materials used for blasting, anhydrous ammonia and the effect of this important feedstock on the cost of ammo
Jan 1, 2007
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The Development of an Inhibited Explosive for Black Pyritic Reactive ShaleBy P Bellairs
The Hamersley Province is located 1OOOkm to the North of Perth .the Capital City of Western Australia and is of major economic significance due to the mining of extensive deposits of Haematitic Iron O
Jan 1, 1996
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Blast Design for Optimizing Fragmentation While Controlling Frequency of Ground VibrationBy Andrew P. Ritter, Douglas A. Anderson, Stephen R. Winzer
We have adopted a unified approach to blast design. Based on earlier research, we chose minimum relief of 3.4 ms/ft between holes in a row and 8.6 ms/ft between echelons to produce good fragmentation.
Jan 1, 1982