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Fingerprint Verification For Control Of Electronic Blast InitiationBy Ron Stewart, Richard Youmaran, Andy Adler
In the current context of heightened concerns with explosives security, there is significant interest in technological controls to improve security. It is important to be able to control what is fired
Jan 1, 2007
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Vibration Monitoring Standards Connected to the Use of Explosives in Different CountriesBy Johan Finsteen Gjødvad, Mathias Jern
The paper is part of the ongoing work of the Environmental committee of EFEE. To assist the European experts working with explosives one of the aims is to improve the common knowledge of similarities
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Using Photogrammetry Data from Unmanned Aerial Vehicle (UAV), Small Unmanned Aircraft Systems (sUAS) for Blast DesignBy Luis Valentim, John E. Wiegand
Highwall or face profiling has long been used to facilitate the design and placement of front row blastholes to ensure optimum burdens. Traditionally, a large number of laser measurement points obtain
Jan 1, 2016
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Large Arena Test Simulator Using Small High Explosive Charges.By Paul Worsey, Larry Frost, Braden Lusk, Seok Bin Lim
For certification of blast resistant windows, current tests consist of arena tests or large air gun tests. Arena tests involve the detonation of more than 1000 pounds of explosives with windows placed
Jan 1, 2006
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Why We Keep Blast ReportsBy Paul Kunze
For some of us, the most disagreeable part of being the blaster- in - charge is doing the required paperwork. Cost coding on time cards, drilling reports, magazine inventory logs, and blast records al
Jan 1, 2004
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Updates in the Determination of Dynamic Pressure TestsBy Alejandro Ferrada Vergara
Most blasting techniques that are designed to improve fragmentation and subsequently improve ore work index to downstream comminution processes, apply powder or energy factor increases, either by stre
Jan 1, 2016
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Cast Blasting in the Light of the Electronic OptionBy Winfried Rosenstock
The development of electronic initiation systems has partially reached or will reach in a short period of time full reliability for general use without limitations. Unfortunately those systems meet wi
Jan 1, 2003
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Controlling high risk blasting in an urban environment The Airport Link StoryBy Rob Domotor
This paper tells the story of using controlled surface and underground blasting methods to excavate hard rock in three areas on Australia’s largest road infrastructure project; the Airportlink Project
Jan 1, 2012
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A Model for Near and Far Field Blast Vibration Based on Multiple Seed Waveforms and Transfer FunctionsBy Ruilin Yang
Blast vibration in the highwall from a cast blast in open pit mines or in the hanging walls from a stope blast in underground mines is a common concern. Vibration in such cases is a typical near-field
Jan 1, 2010
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Design and Testing of Blast Shields for Different Blasting ApplicationsBy Eduardo Lozano, Vilem Petr
The use of explosives bring countless benefits to our everyday lives in areas such as mining, oil and gas exploration, demolition or avalanche control. However, because of the potential destructive po
Jan 1, 2015
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Blast Modeling with Sabrex 3.6 and Its Applications to Improve Mine ProductivityBy Stephen H. Chung
The SABREX computer blast simulation program permits the study of the effective use of explosive energies and predicts the total performance of a blast in terms of:fragment size distribution: muckpile
Jan 1, 1995
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The Safety of Explosives Handling and Blasting in the Mining IndustryBy Kerina Taylor
Due to their high amount of stored energy, explosives have been the cause of many serious injuries and fatalities over the last centuries. Despite safety advances and awareness in the last decades, in
Jan 1, 2011
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Using Explosive Risk Assessment Tools for Emergency Operations PlanningBy Dean Nichols, Matt Ortel
Explosive accidents in the United States have brought increased attention to emergency operation plans (EOP) at all facilities that manufacture, transport, or store hazardous materials – particularly
Jan 1, 2016
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Development, Application and Review of Ontario's Quarry Blasting Vibration GuidelinesBy Lance McAnnuff
Whatever system is devised to control noise and ground vibration from blasting operations must present an effective compromise between the rights of the individual to be undisturbed by the actions of
Jan 1, 2004
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Masterblaster Blasting Management SystemBy Chris Uys, Johan Labuschagne
Sishen Iron Ore Mine, located in the Northern Cape, is an open cast mine excavating approximately 100 million tons rock to produce 25 million tons of high grade haematite ore per annum. The size of th
Jan 1, 1997
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The Application of Mid-Column Air Decks in Full Scale Production BlastsBy Barend Botha, Trevor Davids
The presence of an extensive soft siltstone layer in the middle of the inter-burden sequence of rocks at Syferfontein Colliery in the Republic of South Africa prompted tests to determine the effect of
Jan 1, 2000
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Journal: Near Field Vibration Monitoring for Rock Mass Damage Control Tala Hydroelectric Project, Bhutan IndiaBy H. Venkatesh, Balachander R.
This article discusses the method that was adopted for controlling damage to rock mass while excavating an underground powerhouse cavern at Tala Hydroelectric Project. It discusses in detail the near
Jan 1, 2006
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Full-Field Deformation Measurements Under Explosive Loading Conditions Using Multi-Image Pattern AnalysisBy Xing Zhao, Michael A. Sutton, Vikrant Tiwari, Damien Bretall, Xiaomin Deng, William L. Fourney, Uli Leiste
The dynamic response of a thin aluminum plate subjected to both shallow and deeper buried blast loading was studied. Using a combination of high speed stereo-vision and three dimensional digital image
Jan 1, 2010
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Fire and Explosion of a Mobile Explosive Manufacturing UnitBy Jose a. Sanchidrian, Ramon G. Eguren, Javier L. Amigo
On December 2013 a MEMU exploded at a blasting site in Norway, after burning for more than two hours. This paper describes the analyses made to determine the actual yield of the explosion, the lessons
Jan 1, 2016
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Liquid Propellant TechnologyBy Stanley Griff, William Herrera, William O. Seals
"The Navy initiated liquid propellant research in the early 1940's. The first promising Navy liquid propellant, Otto Fuel II, was developd in the early 1950 as a potential torpedo fuel. Later, the Nav
Jan 1, 1990