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Underwater Shocks from BlastingBy Charles R. Welch, Charles E. Joachim
Underwater blasting causes not only ground shock but water-shock. Underwater shock attenuates less with range from the explosive source than ground shock and has the potential for killing fish or mari
Jan 1, 1997
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High Profile Project in Historic Affluent Nashville Neighborhood Poses ChallengesBy Brent Coleman, Wade Hutchison
The Montgomery Bell Academy project is a parking garage structure topped by a soccer field. This project included expanding parking and moving the present tennis courts. The project is located adjacen
Jan 1, 2012
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Predicting the Envelope of Damage Resulting from the Detonation of a Confined ChargeBy Jason M. Ryan, T Michael LeBlanc, John H. Heilig
"Drill trajectory deviation is a recurring problem in vertical retreat stoping operations. As a result of thisdeviation, 60 kilogram (165 millimetre diameter) and 103 kilogram (203 millimetre diameter
Jan 1, 1996
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A Review of Current Blast Practices in Minnesota Iron MinesBy James Keenan
Mesabi Range blasting has evolved in over a century of mining. The obstacles including: hard and heavily jointed rock, bitter winters and frequent wet holes; combine to create a unique challenge for b
Jan 1, 1996
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Face Velocity Measurements using a Microwave Radar TechniqueBy A T. Spathis, J J. Felice, T A. Beattie
High speed cinematography of surface blasting operations is used for diagnosing various aspects of blast performance. Several quantitative features may be derived including confirmation of the hole in
Jan 1, 1991
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Drilling and Shooting of a Large Air Shaft at an Underground MineBy Curtis Garner
Griesemer Stone located in Springfield, Missouri has supplied aggregate in Southwest Missouri since 1946. In 1954 the decision was made to mine the formation and utilize the mined out area for warehou
Jan 1, 1991
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Reducing Underwater Blast Damage with Air-ScreensBy Gregory L. Hempen
"Pressure waves from submerged blasting can have adverse impacts on nearby structuresand on aquatic fauna. Underwater blasting is not allowed for some situations withoutmitigation of these adverse pre
Jan 1, 1993
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The Use of High-Speed Motion Picture Photography in Blast Evaluation and Design (23c6f2b6-16c1-4f76-b2cd-4d87a79d67ba)By P J. Dailey, S L. Burchell, R F. Chiappetta
High-speed motion picture photography and its application to the mining, quarry, construction, and explosive industries has proven to be a valuable diagnostic tool. The techniques developed allow one
Jan 1, 1983
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Shockwave Consolidation to Densify Powders into a Bulk MaterialBy David Nemir, Jan Beck
A challenge in materials science is the production of a bulk solid material from a powder precursor. One solution is to use shockwave consolidation whereby a ductile tube is loaded with the powder of
Jan 1, 2016
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Deltadet System from Delta CapBy Kevin Dunfield
The Deltadet System is composed of: The Deltadet II electronic Detonator. A Field Terminal to create, modify or simply execute an existing blasting sequence. The radio remote controlled option is comp
Jan 1, 2004
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Ten Year US Eleven State Study of Blasting Damage ClaimsBy Eric Grigoryan, Wade Hutchison
An engineering study of 2,250 blasting damage claims from 1999 to 2008 in Tennessee, Kentucky, Virginia, Nevada, California, Georgia, South Carolina, North Carolina, Alabama, Arizona and Utah were inv
Jan 1, 2009
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Pressures Acting on Targets Subjected to Explosive LoadingBy Leslie Taylor, Uli Leiste
In this paper, results from small scale testing conducted to determine pressure time profi les acting on a plate (taken to represent the bottom of a vehicle) at any given distance from the center of t
Jan 1, 2008
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Digital Tunnel Blasting in a Sensitive Environment: N1 Porto Tunnel Project, PortugalBy Yannick Bleuzen, Manuel Joao, Frederic Monath, Miguel Quaresma
The N1 Porto tunnel project is a 650m segment of large-scale civil engineering plan to improve traffic flow between Porto’s downtown district, the Santo Antonio hospital district and the highway acces
Jan 1, 2005
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Experimental Method to Evaluate the Vibrational Behavior of low Energy Explosives and Their Impact on Slope Damage ControlBy P. Lozada
The objective currently demanded from controlled blasting techniques is to minimize damage to the remaining rock mass while protecting the integrity of mine walls and ensuring the quality of the fragm
Jan 1, 2024
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Blast Control Using Accurate DetonatorsBy P D. Katsabanis, K Steeves, D Dombrowski
Accurate electronic detonators with firing time accuracy within 100 microseconds of the nominal have been used to control blast results in terms of fragmentation, vibrations and wall control. Axisymme
Jan 1, 1995
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Comparison Between Image Analysis and Sieving Uising Laboratory Scale Model MuckpilesBy P D. Katsabanis
Image analysis has been proposed to be an accurate and convenient means of measurement of blast fragmentation. The paper compares the results of image analysis to screening using laboratory scale rock
Jan 1, 1999
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Streamlining Processes, Increasing Security, Productivity, and Process Transparency by Using Digital Logistics Solutions within the Supply Chain of Civil ExplosivesBy Frank Hirthammer
Over the past few years, development and implementation of digital logistics solutions has convinced users of many additional advantages of this technology. Barcode labeling and reading increases the
Jan 1, 2018
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Anatomy of a Blast Muckpile: Influence on Loading Machine PerformanceBy Yves Lizotte, Malcom Scoble, Sanu Hanspal
"This paper reviews the physical, chemical and mechanical components of what is considered to be the anatomy of a blast muckpile. These relate principally to geometry, floor, fragment size and shapedi
Jan 1, 1995
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Advantages and Disadvantages of Down-the-Hole Hammer Blasthole Drilling vs. Rotary Drilling in Large Scale Open Pit Surface MiningBy George D. Raitt, Rudy Lyon
Until fairly recently, Down-The-Hole (DTH or DHD) hammer drilling was never really a factor in large scale open pit surface mining. It was a method confined to water well drillers, aggregate quarries
Jan 1, 1998
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Constructing a Decline Truck Entrance Tunnel Into Rock Reserves Located Beneath a College CampusBy David R. Holberg
In the Kansas City metropolitan area, mineable Bethany Falls Limestone occurs 80 ft below river level under the 700 acre Park College Campus on the north bank of the Missouri River at Parkville. For 2
Jan 1, 1997