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Ground Vibration Attenuation Rate due to Blasting in South Florida
By W. Sharkey Bowers
This study was undertaken in order to determine a conservative estimate of the attenuation rate of vibrations through the shallow limestone in South Florida due to quarry blasting.
Feb 1, 2020
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The Application of Electronic Detonators to Improve Blast Vibration Predictions at Limestone Quarries
By R. Farnfield, W. Birch
Arguably, some of the most restrictive statutory blast vibration requirements attached to mineral extraction operations can be found in the United Kingdom. Such limitations are, as a rule for the UK,
Jan 1, 2006
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Peculiarities of Drilling and Blasting in Underground Small-Scale Mines
By Patricio Santis, Jacopo Seccatore
Artisanal and Small-scale Mining (ASM) is a prominent activity in the extractive industry: considering only gold, it produces about 20% of world market supply. Despite this fact, ASM is generally asso
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Valdez, Alaska Glacier Point Quarry – One Shot / One Chance for Success
By Billy Rosseau, Mike Cammack, Richard O’Meara, Gustavo Azpilcueta
During the summer of 2014, the U.S. Army Corps of Engineers (USACE) sought proposals to vastly improve and expand the small boat harbor in Valdez, Alaska. It would be a multi-year project, and constru
Jan 1, 2017
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The Benefits of Electronic Blasting Systems for Use in UG Mass Pillar Blast Design
By Felix Torres
CVRD is one of the largest mining companies in the world. Adoption of new technology and improving operational efficiency are top company priorities. Initiatives in these areas have driven continuous
Jan 1, 2003
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Investigation of Shock Propagation in Air from Sheet Explosive
By S. Kevin McNeil, William Joa, Catherine Johnson, S. Omar Garcia
The geometry of an explosive is known to have a fundamental effect on the resulting shock wave propagation. Typically researchers use a spherical or hemispherical geometry in order to simplify the sho
Jan 1, 2019
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Case Study and Hands On with the New DSL2 Electronic Initiation System
By Thierry Bernard, J. M. Laboz
2000 HIGH-TECH SEMINAR Blasting Technology, Instrumentation and Explosives Applications
Jan 1, 2000
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Blast Vibration Modelling - An Instrument to Optimise Quarry Production
By Drew Martin
In March 2010 the Boral Linwood Quarry, Adelaide South Australia, implemented the blasting contractors Monte Carlo Blast Vibration Model as part of their blast design process. The Linwood Quarry was d
Jan 1, 2012
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Recent Projects - Downtown Demolition Dykon “withdraws” 13-story Columbia Bank from Kansas City skyline
By Jack Curran
KANSAS CITY, MO - Performing one of the most impressive urban building-implosion projects in recent memory, Tulsa, Oklahoma-based Dykon Explosive Demolition Corp. and Omaha, Nebraska-based Anderson Ex
Jan 1, 2003
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O'Shaughnessy Dam Hydroelectric Project
By Alan Hooper, James E. Mischler
Construction began in 1984 for a 5 megawatt hydroelectric power retrofit at the O'Shaughnessy Dam for the City of Columbus, Ohio. The construction necessitated excavation of limestone bedrock up to 27
Jan 1, 1986
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Improving Safety of Drill Steel Diameter Changes on Rotary Drills
By Zach Ellis, Dusty Fisher
The Office of Surface Mining, Reclamation, and Enforcement (OSM) cited a large surface coal mine for a series of flyrock incidents that occurred when blasting close to the mining lease perimeter. The
Jan 1, 2015
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Response of Non-Traditional Structures to Coal Mine Blasting
By Catherine Aimone-Martin, Mary-Alena Martell
Whole-structure and mid-wall responses of 33 non-traditional structures to surface coal mine blasting were characterized. Eighty-nine blasts were conducted at 11 mine sites throughout the U.S. to meas
Jan 1, 2002
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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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Destructive Wave Interference in Underground Blasting Utilizing Precise Timing.
By Kurt Oakes, Paul Worsey, Braden Lusk, Tony Brasier, Jerry Chambers, Scott Crabtree, Randy Wheeler
Destructive wave interference has been studied in theory for many years. In application however, limited information can be found. Recently, circumstances have enabled a multidisciplinary team to util
Jan 1, 2006
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Blast Design and Diagnostics Using, Portable Solid State, High-Speed Videography Systems
By Laura Bustemante, Bruce Vandenberg, Fred Huettig
Recent advances in solid-state, field portable, fast framing video camera systems and PC based frame capture hardware now allow blast imaging up to 1000 frames per second. Up to 8 seconds of data can
Jan 1, 1998
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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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A Student’s Path to the Explosives Industry
By Brandon Axelrod
This paper follows a student’s interest in explosives which began at an early age after watching a television program highlighting explosives engineering. The use of explosives in those programs led t
Jan 1, 2015
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Techniques to Assess the Influence of Blast Design Parameters on Airblast and Blast Vibration
By 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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Evaluating Explosive Type and Water-Casing for Demolition Kicker Charges
By Rachel L. Bauer, Catherine E. Johnson
Explosive demolition involves first, the use of cutting charges to sever a column and second, kicker charges to move it out of alignment. Dynamite is the traditional explosive used in kicker charges a
Jan 21, 2025
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Rock Motion Simulation and Prediction of Porosity Distribution for a Two-Level Retort
By Dale S. Preece
"The computer program DMC (Distinct Motion Code) [Taylor and Preece, 1989a] was developed in 1988 and 1989 to predict the motion of rock following a conventional blast. DMC executes very efficiently o
Jan 1, 1991