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Wall Control Blasting at the Manassas QuarryBy J Lyall Workman, Peter N. Calder
The Manassas Quarry is a large industrial stone quarry in Northern Virginia owned and operated by Vulcan Materials Company. The quarry experienced instability in a portion of the north wall, which inc
Jan 1, 1992
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An Advanced Blasting Scaled-Distance Model Incorporating Individual Location ResponseBy W. Birch
The traditional concept of scaled-distance modelling for predicting blast induced ground vibration holds many drawbacks, not least of which is the major effect data scatter imparts on confidence deter
Jan 1, 2001
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Theoretical Study and Possible Application of Blast Casting Technique in Phosphate Rock Strip MiningBy Salah A. Taqieddin
The blast casting technique of removing overburden is an innovative technique which was successfully used in the mining of certain surface coal and quarries. This method was found to be efficient in
Jan 1, 1992
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Hard Rock Blasting in an Underground Coal MineBy Mark D. Kirkbride
This paper outlines the process for designing a hard rock blast in an underground coal mine. The coal mine is located in Western Kentucky and operates four continuous miner units at 7 unit-shifts per
Jan 1, 1999
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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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Improved Blast Control Through the Use of Programmable Delay DetonatorsBy C Deacon, M Jones, P Duniam
Electronic blast timing has been in use around the world since the mid-eighties, and, whilst it has yet to be used commercially by large operations on an ongoing basis, significant inroads have been m
Jan 1, 1997
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Flyrock Prediction and Control in Surface Mine BlastingBy J Lyall Workman, Peter N. Calder
Flyrock can be a serious hazard associated with blasting. Many surface blasting accidents involving injury result from excessive flyrock beyond the protected blast zone. Numerous cases of equipment da
Jan 1, 1994
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Results of Blasting in Close Proximity to Water Wells at the Sleeper MineBy Roy Rose, Bruce Bowles, Wesley L. Bender
Numerous large diameter water wells are used to dewater the pit at the Sleeper Mine. Occasionally, a well will be located inside the boundaries of a blast. Although one might expect that wells so loca
Jan 1, 1991
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Explosive Optimization Through the Use of a Cascade Loading Technique at Inco Limited - Manitoba DivisionBy Christoper J. Hunter, Tony Mansel, Carl Kolada
With a current trend toward Bulk Mining methods utilizing both large diameter uphole and downhole drilling, corresponding loading equipment and technology is required to safely and efficiently load th
Jan 1, 1990
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Blasting-Induced Damage in CoalBy Kaby K. Kabongo
The paper is drawn from a project intended to explore a technique of prediction, control and optimization of fracture in coal induced by blasting. It evaluates the fines generated in coal submitted to
Jan 1, 1995
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Underground Central Blast System Electric on NonelectricBy J R. "Dick" Daniel
In the fall of 1988, The Cannon mine decided to investigate a central blasting system based on conventional electric blasting detonators being used to initiate rounds primed with Nonel detonators. The
Jan 1, 1989
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Innovative Landmine NeutralizationBy Everett Clausen, Richard Walker
CIL/EVANinc and the Canadian Explosives Research Laboratory of the Government of Canada have evolved a concept developed by Research Energy of Ohio, into a landmine neutralization system that is the m
Jan 1, 1999
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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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Inexpensive Micro-Computer Digitizer and Response Spectrum AnalyzerBy Herve Duplaine, Charles H. Dowding
Calculation of response spectra for blast induced vibrations is necessary to fully understand and in some instances comply with frequency or distance related safe blasting criteria. Fortunately, micro
Jan 1, 1984
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An Overview of Explosive Industry in IndiaBy B. K. Rath
The Industrialization of a country depends on its mining activities to a great extent. In mineral production, India has a top rank not only in South Asia, at the global level too. Quantum of mineral p
Jan 1, 2000
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The Exploding Bridgewire Detonator - A Safer Explosive Initiation MethodBy H J. MacDonald
An Exploding Bridgewire Detonator (EBW) is an explosive initiator which contains only secondary explosives such as PETN and RDX. It is safer than the normal blasting cap because it requires both high
Jan 1, 1981
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Controlled Study of the Effects of Temperature and Humidity vs Blast Vibrations on HomesBy R Wing, D Corkery
"Several mines in the region of Sudbury, Ontario, occur in or near populated areas. In anattempt to examine the effects of environmental changes and blast induced vibrations onhomes in the area, a mon
Jan 1, 1993
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Optimizing Compressor Output Through Proper Nozzling of Roller Cone BitsBy Mo Jadbabaei, Scott Harrison
There is very limited information available regarding the air pressures, flow rate, and velocity profiles in blast hole air drilling applications. Currently, many people are using incompressible flow
Jan 1, 1999
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Blast Rock Movement and Its Impact on Ore Grade Control at the Coeur Rochester MineBy Pierre Mousset-Jones, Jaak Daemen, Songlin Zhang, Jon Hurley
Most western United States open pit gold mine ore bodies are disseminated deposits. The mineralization is so irregular that it is difficult to visually identify the ore/waste boundary. Blast hole samp
Jan 1, 1994
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Underground Pillar Blasting with Bulk Emulsion explosivesBy H Russell
An account of an experimental blast at the Sullivan Mine involving a small pillar drilled with 4 1/2" diameter up-holes, and loaded with emulsion explosives from a truck-mounted tank/pump unit.
Jan 1, 1984