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Strategy, Innovation and Change - Challenging the Future at the Gregg River MineBy Rick W. Bellenie, Ronald L. Woolf
The Gregg River mine is located 40 kilometres (25 miles) south of Hinton, Alberta, approximately 330 kilometres (205 miles) west of Edmonton and lies against the Front Range of the Rocky Mountains.
Jan 1, 1994
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Preparing for Blast Damage Cases when Foundation Soils are a FactorBy Valerie A. Rhodes, Catherine T. Aimone
Often blast damage litigation involves structural damage which clearly is not blast related. The fact that structures are observed to be damaged when blasting has taken place in the near vicinity of t
Jan 1, 1991
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Controlled Blasting Methods for Excavation of Rock and Concrete in Critical LocationsBy Gordon Revey
In construction and mining work, situations occasionally occur where hard rock or concrete must be excavated at locations near critical structures or utilities. Fearing damage from blasting, contracto
Jan 1, 2001
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Utilizing the Pre-Blast Survey as a Vehicle to Promote Good Public Relations - A Case HistoryBy Wesley L. Bender, James E. Murray
Pre-blast surveys are often conducted solely to document existing structural conditions and uncover potential problem areas. This paper presents a case history where the pre-blast survey was also used
Jan 1, 1988
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Priming Procedures Employed at the Tallya QuarryBy Janos Foldesi, Calvin J. Konya
The determination of the number of primers necessary to efficiently initiate an explosive column charge is essential to good blasting. If the number of primer is insufficient, the total energy stored
Jan 1, 1976
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The Effect of Available Energy on Blast DesignBy Lyall Workman, P D. Katsabanis
Energy released by the explosive is typically partitioned in brisance, heave and losses. The fact that energy released in the P-V expansion curve below a certain point is lost has resulted in the conc
Jan 1, 1998
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Determination of Flying Distance of Pieces in Demolishing BlastingBy Zhang Qi
For the most part, the flying piece is serious endangerment in the demolition blasting. To prevent the endangerment, a large number of materials are needed as the protection. Therefore, the determinat
Jan 1, 1994
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Blasting Parameters for Concrete Fly-OversBy Bob de Raadt
The main problem in blasting a fly-over spanning a main road is the brief time available for blasting and the removal of the debris, in order to minimize the ensuing traffic disruption in the public h
Jan 1, 1984
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Control of Ground Vibration from Surface Blasting Operations Using Computer Simulations to Evaluate the Effects of Cap ScatterBy Alday B. Andrews
A computer program called Seiswise that predicts the character and intensity of ground vibration generated by surface blasting operations was developed and field tested. The program uses the time hist
Jan 1, 1990
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Fines Reduction Program at the Canadian Salt Company (fdcbe6d6-d49f-4e71-af9e-e1942cd6d9c3)By John M. Bolger, Keith E. McMaster
Excessive salt fines are undesirable in underground salt mining as they are considered a costly waste by-product. This paper describes an extensive explosive application program conducted at The Canad
Jan 1, 1996
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Evaluation of Safety Against Lightning in MBSBy Koichi Kurokawa, Takeo Ueda, Masahi Nakano, Yoji Tasaki
A lightning strike generates several 10kA and several billion volts, and earth currents generated by lightning is dangerous to some underground and all surface blasting operations. In order to evaluat
Jan 1, 1988
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Explosive Performance Measurements on Large, Multiple-Hole Arrays and Large Masses of Conventional ExplosiveBy Donald D. Eilers, Pharis E. Williams, Thomas O. McKnown
The Continuous Reflectometry for Radius vs. Time Experiment (CORRTEX) system was developed by the Los Alamos National Laboratory for determining the energy released in a nuclear explosion by measuring
Jan 1, 1995
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Wave Propagation in a Subsurface Environment Due to Blasting OperationsBy Dennis A. Clark, Richard E. Calvin
As the scarcity of mineral resources increase and subsurface mining activities expand along with simultaneous surface mining in coal, industrial minerals and rocks, along with metals, the need to insu
Jan 1, 1981
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A Proposed Method for Remote Area Mass QuarryingBy Pat McLaughlin, J R. (Dick) Daniels
Current practice in establishing quarries in remote areas with hilly or mountainous terrain tends to the use of airtracs (or similar pioneering units) drilling horizontal holes to establish a face, fo
Jan 1, 1995
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The Use of Detonating Cord to Section Concrete Structures into Removable Size BlocksBy Donald H. Matthews
The usual method of dismantling massive concrete formations with explosives, is to totally demolish the entire concrete structure. If any portion of a concrete structure is required to remain in its o
Jan 1, 1978
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The Relationship between Strain Energy Density and Micro-cracking in the Rock StrataBy Vilem Petr
Optimization blast design parameters for rounds used at surface mines, quarries or cast blast has taken on a new importance with the increased the cost of the explosives and electronic detonators. Thi
Jan 1, 2008
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Firing Accuracy of Electric DetonatorsBy Richard J. Mainiero, T S. Bajpayee
The U.S. Bureau of Mines (Bureau) has conducted research to evaluate the firing accuracy of electric delay detonators used in surface blasting operations. Over four billion pounds of explosives and bl
Jan 1, 1990
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Impact, Thermal, and Shock Sensitivity of Molten TNT and of Asphalt-Contaminated Molten TNTBy Richard J. Mainiero, James Q. Wheeler, Lewis H. Kopera, Yael Miron, Solin S. W Kwak
The research reported here was part of an effort to evaluate the safety of a process to recover TNT from MK-9 depth bombs by the autoclave meltout process. In this process the depth bombs are heated t
Jan 1, 1996
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Risk Management for the Explosives UserBy J T. Patterson
The mining, quarrying and construction industries are often blamed for causing damage to residential-type structures when explosives are used. The claim experience for blasting vibration damage has be
Jan 1, 1978
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South African Blasting Practice in Shaft SinkingBy Rodney C. Espley-Jones, John C. B Wilson
South Africa is well known for its shaft sinking exploits, and many of the world's biggest and deepest shafts are to be found there. Blasting practice differs in a number of respects from that followe
Jan 1, 1979