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Relationship between peak particle acceleration, velocity and displacement of blast vibration
By Ruilin Yang
The following simple equations are frequently used within the blast vibration community;PPA f PPV v = 2p · , PPV f PPD d = 2p · ,a f PPV PPA 2p = , and v f PPD PPV 2p = where, PPA is the peak particle
Jan 1, 2012
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479 Charges, 13 Decks...120 Meters Above a Crushing Plant
By Thierry Bernard
This case study shows how a unique combination of field measurements and advanced technologies allowed blasters designing, loading and firing an incredibly challenging quarry blast.
Jan 1, 2015
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Innovative Blasting Mine Life Extension at a Coal Mine in Australia
By R. Bitmead, R Barker, A. Drake
The opencut coal mine is located about 50 km west of Brisbane, the capital city of Queensland in Australia and produces about 140 000 tonnes per annum of high grade steaming coal utilising a small tea
Jan 1, 2002
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Internships: A Bridge into the Explosives Industry
By Richard Hosley, James Daley
Every grey haired member of the explosive’s industry has said at least once, “We have to get some younger blood into our industry, I might want to retire someday.” And many a youngster who loves to se
Jan 1, 2014
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The Behavior of Rocks in the Near Zone of an Explosion
By Serge V. Krasavin
The behavior of rocks subjected to dynamic loading conditions under explosion includes sufficient information about hydrodynamic variables such as pressure P, mass velocity U, internal energy E, speci
Jan 1, 1992
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The 8 Millisecond, "Criterion": Have We Delayed Too Long in Questioning It?
By Douglas A. Anderson
The simplest method used to predict ground vibration from blasting is scaled distance -the distance from a blast divided by the square root of the Pounds per delay. Pounds per delay is defined as the
Jan 1, 1989
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Modeling of Special Blast Geometries from Open Pit to Underground
By Dale S. Preece, Stephen H. Chung
Explosives energy can be used effectively in breaking and displacing large volumes of rock in mining and quarrying industries in both open pit and underground. The blast result, however, may not be ec
Jan 1, 2005
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Modeling Vs. Monitoring Blast Movement: The Cost of Variation
By Will Hunt, Darren Thornton
In March of 2013, an undisclosed gold mine (MINE X), located in the Western United States, performed blast movement monitoring of three blasts occurring in one of two active pits. Blast Movement Monit
Jan 1, 2014
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Low Frequency Vibrations Produced by Coal Mine Blasting and their Impact on Structures
By B Mohanty, M P. Roy, P K. Singh
"The measured response of residential structures is a critical indicator of troublesomeor potentially damaging ground vibrations. A study was conducted to evaluate theresponse of structures situated i
Jan 1, 2008
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Need of an International Code on Explosives and ISEE Role in Developing it
By Roberto Folchi, Hans Wallin
Having so many norms and technical content of legislation to deal with is a problem that an explo-sives engineer has to face, especially when working at an international level. Each country has its ow
Jan 1, 2015
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Community Response To Airblast And Vibration From Surface Charges
By L. Wilson, M. Kotzel, T. Pienaar
An empirical equation is presented for the maximum airblast from unconfined charges. This has been tested at a number of sites and with charges ranging from 0.1kg to 311kg. The equation is developed t
Jan 1, 2011
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Possibility of Organizing and Analyzing Drilling - Blasting with a Computer Program (DelPat)
By Cceliksirt, V Erkan
This computer program has been developed under the field conditions for use in control of surface drilling-blasting operations. This paper outlines the relevance of fragmentation to quarrying, open pi
Jan 1, 1998
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Pre-Blast Surveys; a Public Relations and Claim Reduction Tool (b114a2f5-7740-4145-afd2-f7ffc2af0fcd)
By David Harrison, Edward J. Walter, Meitra Ferek
Agreat tool in the prevention of blasting complaints and subsequent damage claims. In today’s highly competitive industry, we are always looking for ways to become more cost effective. This article in
Jan 1, 1995
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Case Study: Systematically Improving Drilling and Blasting Operations in Hard-Rock Mines
By Reinhold Schnell, Piers Wendlandt, Nathan Rouse
Drilling and blasting are key components of every hard-rock (i.e.,metal/nonmetal/coal) mining operation. Well-executed and maintained drilling and blasting can have a major positive impact on the over
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Blast Designs and Instant Diagnostics Using the SVC1000 Digital, High-Speed Smart Video Camera System
By Bruce Vandenberg, Andy Bartfay-Szabo, Steve Conway
Recent advances in solid-state, field portable, fast framing video camera systems and PC based frame capture hardware now allow blast imaging up to 500 frames per second. Up to 8 seconds of data can b
Jan 1, 1995
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Platform Loading from Explosions in Saturated Sand using a Visco-Plastic Model
By W G. Szymczak, Leslie C. Taylor
The University of Maryland (UMD) has conducted a series of small-scale tests using explosive charges buried in saturated sand. Twelve different combinations of depth of burial of the charge and height
Jan 1, 2007
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Geologic Models - The Economic Exploration Tool
By Dennis R. Jr Bell
Before beginning any site development or mineral extraction activity, it has been well documented that it is first prudent to gain an understanding of the prevailing geologic conditions.Whether it’s i
Jan 1, 1997
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Usability of Expert System Integrated With GIS in Blasting Operations
By U. Gorkhan Akkaya, N. Enver
Geographic information system (GIS) is one of the most accurate and useful tools to help decision – making for decision-makers. As to expert systems, it provides solutions to the problems faced by mim
Jan 1, 2013
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Journal: 100 Years / The Colliery Guardian London July 15, 1904
By Robert Hopler
In accordance with the 57th section of the Explosives Act, 1875, the following report on the working of the Act during the year ending December 31, 1903, is submitted. There have been no modifications
Jan 1, 2006
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The Effects of Run-up on an Explosively Formed Projectile
By Jason Baird, Joshua Hoffman, Phillip Mulligan
The purpose of this report is to address the method of reducing the overall explosive weight of Explosively Formed Projectiles (EFPs) while still achieving satisfactory performance. This reduction is
Jan 1, 2010