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Blasting in Congested AreasBy David Miller, James Santoro
Blasting is often required in urbanized areas to allow for economical execution of construction, demolition, and mining. Several examples of operations that require blasting in built up areas include
Jan 1, 2000
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A Preliminary Study into the Relationship between Air Overpressure and Face Velocity in quarry BlastingBy W. J. Birch, R. Farnfield, L. Bermingham
Whilst a significant body of research has been carried into air overpressure levels that arise as a result of the use of explosives, few published studies have actually tried to relate the movement of
Jan 1, 2008
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The Assessment of Detonation Codes for Blast EngineeringBy C V. B Cunningham
The assessment of blasting results under production conditions is extremely difficult. As a result, it can take months or years to establish objective and valid estimates of explosive performance in a
Jan 1, 1991
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Electronic Detonators and LightningBy J. Lindenau
One of the significant benefits of electronic detonators is their safety, especially their relative insensitivity to extraneous electrical energy. The various brands of electronic detonators on the ma
Jan 1, 2008
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Application of Cast Blasting in Moroccan Phosphate MinesBy Mansour Asri, Philippe Somogy, Youssef Daffi, Amor Karim
Very few cases of Cast Blasting use in phosphate mining are reported. However, in open-cast coal mining, Cast Blasting is a common practice. And yet, the geological structure of both types of deposits
Jan 1, 2015
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Haul Road Design CriteriaBy Laurance A. Beck
Safety is the most important aspect of haul road design. Although other aspects of road installation enter decisions on design, the safety of persons using the road has to be foremost for the duration
Jan 1, 1995
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Tell Me Professor Richter -- How Much Did They Shoot?By Douglas A. Anderson
It is quite common for people exposed to blast vibrations to ask questions such as "How big was that blast on the Richter Scale?" Although it is tempting to dismiss such questions out of hand, for the
Jan 1, 1994
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Blast Optimization of Hard Ores at Phu Kham Open PitBy Wayne Rogers, Kell Monro, Arthur Pacunana
The Phu Kham Copper-Gold Operation (PKM) is a large-scale open pit mine located in northern Laos. It was developed and is operated by Phu Bia Mining Limited (PBM) a Lao-registered subsidiary company o
Jan 1, 2018
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Desensitization and Malfunction of Cap-Sensitive Explosives and Delay DetonatorsBy Michael S. Wieland
Charge malfunction problems result from rather universal damage mechanisms and are widespread throughout surface and underground delay blasting. Recent refinements in instrumentation technology reveal
Jan 1, 1994
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Resolution to a Conflict Regarding Blasting Near a High Pressure PipelineBy Randall Wheeler
In early 2008 we were asked by a quarry to become involved in a conflict with a pipeline company concerning blasting near one of their underground high pressure gas lines. The pipeline company, withou
Jan 1, 2011
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Mining and Fragmentation: Proposal for a More Efficient Mine ManagementBy Ivan Carrasco, Benjamin Cebrian
Mining companies have traditionally organized their structure around a scheme easy to manage: Mining Department and Mill Department. In a challenging landscape for mining, with decreasing grades, incr
Jan 1, 2014
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Isolating Single Hole Vibration Signals from Multi-Hole ShotsBy Rob Famlield, Gavin Yuill, William Birch
The Blasting Research Group at the University of Leeds, in the United Kingdom, continues to be highly active in the area of the environmental impact of blasting. In recent years a major part of this r
Jan 1, 2002
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Back to the Basics; Nonelectric Initiation Shock Tube Systems, Part 2: General ApplicationsBy Larry Schneider
I n the simplest application of a shock tube initiation system, the tubing acts as a “relay line” which passes a detonation signal from borehole to borehole. When the signal arrives at each borehole,
Jan 1, 1995
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Hydtro-Fracturing Technology for Secondary Rock BreakingBy Don McCarthy
Modern mining has been dominated by the drill-and-blast method for more than a century. There have been steady improvements in drilling technology, explosive products, methods of initiation and integr
Jan 1, 1998
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Concepts and Case Study for Regular Rhythmic Timing and SequenceBy Neal Lee, Braden T. Lusk, Jhon Silva-Castro, Patrick J. Jenks
"Timing and charge sequence are very important for optimized blast design. Traditional nonelectricinitiation systems have moved the industry toward a system of delays consisting of hole-to-hole androw
Jan 1, 2016
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Testing Electronic Detonators to Increase SAG Mill Throughput at the Red Dog MineBy Norman Paley
A blasting project was undertaken at the Teck Alaska Red Dog Mine to determine the extent that Semi-Autogenous Grinding (SAG) mill throughput could be increased by using electronic detonators. The Jul
Jan 1, 2010
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Continuing Improvements in Longhole Stoping at the Bulyanhulu MineBy P. O'Connell, J. Lever, C. Clemence
The Bulyanhulu Mine, Tanzania is constantly trialing ideas for improvements in the drill and blast process. The project work has resulted in a large number of choices in explosive type and charging me
Jan 1, 2006
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Seismic Refraction Surveying Techniques for Use in Blasting Design Optimization and Explosive SelectionBy John Dean Smith
"In many operations the two most overlooked aspects in the drilling and blasting process is theblast optimization and explosive selection. Often times we find a blast design that seems to work andprod
Jan 1, 1995
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Systems Integration of a Global Explosives Security System at a MultiNational Explosives Manufacturer Using Radio Frequency Identification Device (RFID) Based Technologies for Tracking and Monitoring Explosives and DetonatorsBy Thomas Zukovich, Robert Morhard, Thomas Gelormino
The ExploTrack Explosives Tracking System is a sophisticated integration platform designed to track explosive products in both fixed locations and mobile environments globally, in real-time, on a 24/7
Jan 1, 2007
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CEE BEE ZERO TWO Construction to Destruction - A Case StudyBy Deepak Vidyarthi
This paper deals with various measures adopted in protecting a conveyor duct (named after a Conveyor Belt that was numbered as ‘02’) housing a 1600 mm (63 inches) belt conveyor system in a large, heav
Jan 1, 2008