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Protection from Liability Before, During, and After Blast DetonationBy Ralph E. Burnham, J. Kelly Ratliff
"The words “dynamite,” “TNT,” “explosives,” and “blasting” typically cause the general public, andjurors, apprehension and fear. Although blasting operations conducted by well-trained, skilled, andexp
Jan 1, 2016
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Flyrock Mitigation Through the Use of Drones in Surface Quarry BlastingBy J. Schoonover, A. Moore
In the explosives industry, individuals face a multitude of hazards while working in mines, quarries, and construction sites. Safety becomes an ever-present driver as companies attempt to control cost
Jan 1, 2024
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Mine Blasting Safety: A Century in ReviewBy Harry Verakis, Thomas Lobb
This paper summarizes the course of mine blasting safety, particularly in underground coal mining, in the USA for over a century of mining operations. During the late 1800's and especially in the firs
Jan 1, 2009
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A Probability and Risk Based Fragmentation StudyBy Alan R. Cameron, William Forsyth, Tom H. Kleinel
Because good and bad blasting must be defined in terms of overall mining costs, blast optimization requires combined blasting and costing models. Furthermore, the models must be both accurate and comp
Jan 1, 1995
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Sensitivity Analysis for Optimum Open Pit BlastingBy Kai Nielsen
A model has been developed for sensitivity analysis of open pit bench blasting. The model simulates the cost effectiveness of various blasting designs in relation to the equipment used for drilling, l
Jan 1, 1985
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Shipping Ammonium Nitrate for the Cerrejon Coal Project Colombia, South AmericaBy A Gene Riggs
The Cerrejon Coal Project in Colombia, South America is one of the largest coal mines in the world. The mine is located in northeastern Colombia on the La Guajira penninsula. The area is in a remote v
Jan 1, 1984
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Computer-Aided Blast Fragmentation PredictionBy G E. Exedaktylos, Y Zhou
The complex and non-linear nature of blast fracturing has restricted common bract design primarily to empirical approaches. The code developed for this investigation simulates the pattern of interacti
Jan 1, 1989
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Fixortm -A New Approach to Neutralizing Landmines and UxoBy Bill Bauet, John Anderson
There are always security concerns when explosives are transported and stored, and these concerns are intensified in peacekeeping operations where explosives could fall into the wrong hands. MREL Spec
Jan 1, 2001
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Geophysical Exploration, Blasting Parameters, and Fragmentation in QuarriesBy Ivan Kovac, Pero Marjanovic, Branko Bozic
"The paper deals with results of geophysical survey of the rock masses, and the blasting parameterswhich have effect on the fragmentation in quarries . A relationship between the burden, which is the
Jan 1, 1999
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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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Pressure Effects on Density of Small Diameter ExplosivesBy R Deshaise, B Mbhanty
The importance of controlling density of commercial explosives, and the various means to achieve it are described. m e field conditions responsible for density changes during blasting and their effect
Jan 1, 1989
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Improved Methods of Blasting Concrete for Welland Canal RehabilitationBy Ray Jambakhsh, Craig Copping
The St. Lawrence Seaway's Welland Canal has been undergoing a rehabilitation program that requires the removal of deteriorated concrete from the 25 meter high lock walls. Multi million dollar contract
Jan 1, 1994
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The Other Building Boom: Guidelines for the Technical Application of Explosives to Industrial and Commercial Structure DemolitionBy Walt Meglasson
"Developing technologies in demolition equipment and processes have produced a newsophistication within the demolition industry. Yet, with increasing frequency, owners,architects, engineers, and contr
Jan 1, 1993
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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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Complete Computer Simulation of Crater Blasting Including Fragmentation and Rock Motion (2000 International Society of Explosives Engineers)By Dale S. Preece, Lee M. Taylor
Computer simulation of the physics involved in conventional rock blasting can be split into two phases; transient stress wave propagation and rock motion. Because the two phases involve totally differ
Jan 1, 1989
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Relationships between Pipe stress, Ground Particle Velocity and Scale Factors in Blasting DolomiteBy Dennis Alan Clark
An increase in construction and quarry operations has necessitated blasting activities in areas once considered rural and in the close proximity of transmission pipelines. A method to determine the ma
Jan 1, 1976
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Blasting Vibrations Affected by Underground CavitiesBy Jennifer P. Harrell, D. Joseph Hagerty
In many areas of the eastern United States, especially in the Midwest, past mining activities have left large and extensive underground openings. Now, renewed mining is occurring in such areas in surf
Jan 1, 2002
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Method for Determining Amplitude-frequency Components of Blast Induced Ground VibrationsBy O E. Jr Crenwelge
Recently promulgated regulations governing blast induced ground vibrations in the mining industry contain a frequency criterion as one option for verifying compliance. This criterion is based upon an
Jan 1, 1988
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Damage Criteria for Nearby Structures During Underground Explosions and EarthquakesBy Krishna Nand
For assessing the safety of structures during underground explosions, ground particle velocity gives the best damage criteria, and 100 mm/see of ground particle velocity has been internationally accep
Jan 1, 1988
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Explosives Energy is Challenging Mechanical Energy for Overburden RemovalBy Jim Petrunyak, Conny Postpack
The authors describe in this paper a systematic approach toward reducing coal production costs up to 35% through the use of explosives energy for overburden removal. In this system, explosives are emp
Jan 1, 1983