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Signature Hole Analysis and Vibration Modeling: An Indonesian Case StudyBy Wawa Jaka Sungkawa, Slamet Rachman Jaka, Tom Dermody
Nowadays, with such a focus on environmental protection, surface mining activities have come under pressure to ensure their activities do not adversely affect the local surroundings. As part of the ex
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Wavelet Transform Analysis of Blast SeismographBy Douglas A. Anderson
Much progress has been made in understanding the forward process for blast vibration simulation: that is, how to create a resultant seismogram from an empirically determined seed waveform. What has no
Jan 1, 2013
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Controlled Blast Induced Liquefaction of Water Saturated Sands Using 250 m Long Horizontal Holes and Electronic DetonatorsBy M. Ganster, H. Krenn
The mission of the project is the fast and cost-effective rehabilitation of decommissioned lignite mining and coal upgrading facilities. This is necessary to ensure the successful future utilization o
Jan 1, 2013
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Techniques to Assess the Influence of Blast Design Parameters on Airblast and Blast VibrationBy Robert Hivick, Frank Sames
The control of environmental effects, especially blast vibration and airblast, has become a dominating planning criterion for most surface blasting operations. Compliance with existing regulations is
Jan 1, 1999
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A New Generation of Shock Tube DetonatorsBy John Watson
The earliest known records related to mining document in dramatic terms the fact that mining methods have undergone significant change over the centuries. Wooden wedges, hammers and chisels, “fne sett
Jan 1, 1997
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The Journal of Explosives Engineering - Vol 21 No 2 - Dynamite DazeI had the opportunity recently to visit a magazine site of a major explosives company. It was fun to see the storage areas again and it was really interesting to see one of the old magazines that prob
Jan 1, 2004
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RF Susceptibility of Electronic DetonatorsBy B. Papillon
There has been a veritable increase in the adoption of electronic detonators in the last few years. Electronic detonators offer several distinctive features over electric and non-el (shock tube) deton
Jan 1, 2009
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Explosive Destruction of an Underground Reinforced Concrete Bunker – Computer Hydrocode SimulationBy Dale Preece
A carefully designed and controlled in-place destruction experiment was performed on a concrete bunker buried in 4.27 m (14 ft.) of soil. The objective was to determine if the explosive charges would
Jan 1, 2006
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A Case Study Applying the Multiple Blasthole Fragmentation Model (MBF) at an Open Pit MineBy C. McAllister, D. Preece, J. Berendzen
The Multiple Blasthole Fragmentation (MBF) model was developed recently and has been reported in previous papers. The MBF model accepts inputs from the blast design, such as: location and orientation
Jan 1, 2016
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Back to the Basics; Nonelectric Initiation Shock Tube Systems Part 2: Safety ConsiderationsBy Larry Schneider
"0 ne of the incentives that led to the development of non-electric shock tube initiation systems was the desire within the industry to improve detonator safety. And to the extent that nonelectric ini
Jan 1, 1995
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Pump Safety Tests Regarding Emulsion Explosives (48854aaa-273e-44f8-b19f-684e2e8c5647)By Hans Perlid
In the handling of emulsion explosives pumping is a key operation. A number of serious accidents has shown that pumping can be a risky operation and should be carefully considered and investigated. Th
Jan 1, 1996
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Safety Talk - Misfires: What All Employees Need to KnowBy Robert Morgan
The mind-set that only blasters and their helpers need training in explosives can result in risk to other employees working at mine or construction sites where blasting is conducted. Misfires are not
Jan 1, 2004
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Design and Testing of Bubble Curtain at Whirl Bay, BCBy Alastair Grogan
In October of 2002, the author was retained by Public Works and Government Services Canada, on behalf of the Department of National Defense, to design, construct and test the effectiveness of a bubble
Jan 1, 2005
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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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Blasting Effects on Pore Pressure in Coal Impoundments (Dry Conditions - Part I)By Joshua Micah Hoffman, Jhon Silva-Castro, Kylie Larson-Robl
A coal mine impoundment failure has the potential to be environmentally devastating and life-threatening. It is well documented that after seismic events slope failures in impoundments can occur. It h
Jan 1, 2015
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Well Casing - Another Problem Solved Through the Uses of ExplosivesBy Jerry Wallace
The goal: At an industrial site, sever a well pipe containing an interior obstruction in a timely, cost effective manner by using a shape-charge to cut through the casing more than 50 meters below gro
Jan 1, 2000
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Semiconductor Bridge (SCB) Research and DevelopmentBy C B. McCampbell, R W. Jr Bickes
Sandia National Laboratories has developed a semiconductor bridge (SCB) igniter for the ignition of a variety of explosive materials. When subjected to a low-energy current pulse, the bridge bursts in
Jan 1, 1991
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The Effect of Calculated Explosive Energy Output on Blast DesignBy P D. Kasbanis, Lyall Workman
"The energy output of an explosive is typically calculated using an equation of state and computerapplications. Results are reported as weight and bulk strength, either in absolute terms or relative t
Jan 1, 1996
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Blasting in Challenging EnvironmentsBy Richard Goodridge, Stephen Thomsqn, S Rodgers, D Tunaley
The mining, quarry and construction industries are facing’new challenges everyday. These challenges can be imposed by economic objectives or through external factors such as extreme geological conditi
Jan 1, 1998
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Production Blasting with Electronic Delay Detonators at Peak QuarryBy H G. Bosmare, G Bedser, C V. B Cunningham
Peak Quany has achieved substantial improvements to its bottom lie by giving close attention to blasting practice, and in pr@icnlar by introducing electronic delay detonators for routine production bl
Jan 1, 1998