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" A Good Neighbors Policy"; the Evolution of O & G Industries, Inc.'s Public Relations Policy Working With the Local TownsBy Douglas R. Simms
O & G Industries, Inc. owns and operates a number of rock quarries within the State of Connecticut. These rock quarries are surrounded by residences and commercial neighbors who have concerns related
Jan 1, 1994
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Explosive Avalanche ControlBy Braden Schmidt
The following full paper will go into the products, techniques and people who work in the avalanche control industry giving insight to the other members of the ISEE an overview of the niche blasting t
Feb 1, 2020
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Electro-Magnetic Induction Blasting SystemBy Koichi Kurokawa, Takeo Ueda, Yoji Tasaki, Masashi Nakano
We have developed a new firing system which simplifies the handling and extensively increases the safety in electric blasting operations. Based on the principle of the transformer, this system is oper
Jan 1, 1986
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Management's Effect on Drilling and BlastingBy Alan R. Gadberry
To resolve drilling and blasting problems, rather than treating symptoms and allowing problems to grow, the mine operator needs to change the way he operates. When a mine operator discovers a drilling
Jan 1, 1985
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Dig Instrument By BlastingBy Jikai Rong Changai Liu
The dig instrument by blasting is a,new product we developed(See Fig. 1) It is an apparatus to dig hole at the ground. It is composed of combustor A, combustor B, charge pipe and shock head. Work char
Jan 1, 1998
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Evaluation of Blast Damage to Pastefill at Louvicourt MineBy Hung Tran, Denis Fleury, (Ken) Qian Liu
Pastefill technology has gained an increasing popularity over the past decade. The main advantages are: environmental performance (mainly in tailings disposal), low operation costs and ease of operati
Jan 1, 2000
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Blasting on the Iroquois TrailBy Charles Joyce, William C. Burkle, Dan Murphy
Rare indeed has a major cross country natural gas pipeline met and surmounted such obstacles as the Iroquois Gas Transmission Line from Canada to Long Island, New York. Of the 370 miles long length a
Jan 1, 1992
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Multiple Controls to attenuate damage in Final Pit WallsBy Daniel Vargas Quispe, Yorhinio León Robles, Marco Jauregui Vargas, Helen Espinoza Bailon, Oshin Quispe Luya
This project describes the methodology applied during the execution of tests to determine the multiple controls that mitigate damage to the final walls of the pit. The different tests were executed on
Jan 21, 2025
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Fragmentation Assessment Using a New Image Processing Technique Based on Adaptive Neuro Fuzzy Inference System (ANFIS)Computational techniques in determining particle size distributions after blasting is getting wide acceptance. A well known approach to extract this kind of information from digital images is edge det
Jan 1, 2004
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The Future of Slurry ExplosivesBy Neil E. Gehrig
The word "slurry" was used by Dr. Melvin Cook and Mr. Henry Farnam to describe a new blasting agent developed in 1956. This development, along with the development of ANFO triggered the Modern Era of
Jan 1, 1982
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The Hercudet Non-Electric System of Blasting - Characteristics and Practical ApplicationsBy Robert B. Hopler
Hercules Incorporated has developed and introduced a totally new non-electric delay blasting cap system which utilizes a low energy gas detonation to activate the caps. Unlike any other initiation sys
Jan 1, 1977
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The Development and Testing of a New Mechanical Stemming AidBy Paul Worsey, Terry Nixon
The development and testing of a simple mechanical stemming aid (Patents pending) resulting from a Joint venture by Incubator Technologies Inc. and the University of Missouri-Rolla and funded by the U
Jan 1, 1988
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Blasting Procedures at Woodville Lime and Chemical CompanyBy Calvin J. Konya
The Woodville Lime and Chemical Company Limestone Quarry is located in Sandusky County, Ohio. Fifty years ago, when quarrying began, it was situated approximately two miles from the town of Woodville.
Jan 1, 1977
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Application of Ground Vibration Frequency Spectrum Analysis as a Tool for Optimizing the Blast Design in Large Open Pit MinesBy K Ramachandra Rao
This paper explains the methodology for assessing the efficiency of rockmass fragmentation by explosive blasting, from ground vibration frequency spectrum analysis of the blast event. Explosives are u
Jan 1, 1994
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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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Predicting Vibration Through Linear-Regression ModellingBy Anthony Konya, Calvin J. Konya
The publication, RI8507, from the U.S. Bureau of Mines established an envelope equation that related scaled-distance to peak particle velocity in an attempt to predict ground vibration in the design p
Jan 1, 2018
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Blast movement numerical simulation effective way to monitor ore dilution.By Sam Taoum, Omar Riahi
Few tools allow for accurately tracking ore dilution after blasting. Existing methods often rely on data analysis or linear interpolation of velocity, which can be imprecise and less effective in vari
Jan 21, 2025
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Close in Blasting in Urban Areas, Changing Regulations and a Case StudyBy C. Breeds, K. Jeremiah, E. Jennings
Washington State has a well developed set of blasting regulations which have been promulgated by the Department of Labor using extensive stakeholder input, not only from citizens but also from manufac
Jan 1, 2024
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A History of Explosive Demolition in AmericaBy Brent Blanchard
The use of explosives to safely fell structures can be traced back over 300 years. Since then, dozens of chemists, inventors, blasters and demolition experts worldwide have played prominent roles in t
Jan 1, 2002
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Carbon Monoxide Poisoning Associated to Blasting Operations Close to HouseBy Pierre Auger, Benoit Levesque, Richard Martel, Guy Sanfacon, Louis-Charles Boutin, Marc-Andre Lavigne, Patrick Brousseau, Luc Trepanier, Louise Galarneau
Explosives used for blasting operations in civil engineering works, like construction of piping systems under roads, of pools, of houses and buildings can generate large volumes of carbon monoxide (CO
Jan 1, 2002