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Portable, Multi-Channel and Continuous Velocity of Detonation Recorders (122b6f71-61a6-4f23-afba-c5878df1df8c)
By Jackson R. Pressley, Bruce Vandenberg
The knowledge of how and when your explosives go off can help you make intelligent decisions regarding future application of explosives thus removing some of the black magic associated with blasting.
Jan 1, 1992
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Determination of Air Blast Overpressure Levels
By Karl E. Burgher
Since World War II, the need for the use of explosives with testing, construction, demolition, mining and quarrying near urban areas has increased dramatically. Once remote, testing areas have been en
Jan 1, 1988
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Experimental Studies to Investigate Small Scale Explosive Loading Using Visualization Techniques
By L C. Taylor
Both the U. S. Navy and the U. S. Army are interested in knowing more about the loading applied to vehicles which are unfortunate enough to encounter a detonation of a buried mine in the course of per
Jan 1, 2016
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Applications of GPS and Equipment Monitoring Technology to Blasting Operations in Surface Mining
The objective of current efforts by AQUILA Mining Systems Ltd. is the continued development of computer-based systems and techniques to automatically process and interpret monitored performance data f
Jan 1, 1995
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Expansion of the Panama Canal
By Tom Treleaven
The widening of the Panama Canal to approximately 130 feet (40 m) for its entire length began just a few years ago. The original expansion program was slated for completion in 18 to 20 years, but has
Jan 1, 1997
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Dynamic Response of Buried Oil Pipeline Caused by Tunneling Blasting
By Zheng Shuangying
The vibration effect of the buried oil pipeline caused by tunneling blasting affects the pipeline safe transportation, tunnel construction schedule and its construction cost. The dynamic response char
Jan 1, 2015
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What a Gas: Blasting Under Pressure
By Jerry Wallace
This project consisted of blasting for expansion of a major interstate natural gas transmission pipeline pump station. The pump station handled 400-500 million cubic feet (1 l- 14 million cubic meter
Jan 1, 1996
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Safe Blasting Parameters And Seismic Influences During Construction Blasting
By Mario Dobrilovic, Zvonimir Ester, Vinko Skrlec, Vjecislav Bohanek
The first public garage in the city of Dubrovnik has been built in highly urbanized area, on location Ilina Glavica. The excavation of the building pit has been done partly by construction machinery,
Jan 1, 2009
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Analytical High-Speed Photography to Evaluate Air Decks, Stemming Retention and Gas Confinement in Presplitting, Reclamation and Gross Notion Applications
By Mark E. Hammele
A number of new thoughts have recently emerged concerning the role of air decks, stemming, gas confinement and gross motion in specific blasting environments and applications. Field research in full-s
Jan 1, 1989
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RF Sensitivity Testing of an RF-Safe Electric Detonator
By James Barker, David Leidel, Don Crawford, Daniel Dorffer
This paper describes the test processes performed to ensure the suitability of an RF-safe detonator for use in oilfield explosives operations on land and offshore locations where RF silence cannot be
Jan 1, 2008
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Crystal Falls Dam Demolition and Protection Techniques Using an Air Curtain
By Alex Chapman, Cam Thomas, Bryan Karney
"During the early summer of 1989, Ontario Hydro removed a concrete portion of the North Channel Dam at Crystal Falls Generating Station by blasting and excavating in marine conditions. Because of the
Jan 1, 1992
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Safe Blasting Near Important Civil Structures: A Case Study
By T. N. Singh, Vasudev Singh
Most of the surface mines in India have drilling and blasting practice as excavation method. All the mines have to keep the blast vibration level below a certain limit. But when mining operation is ne
Jan 1, 2006
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Correlating Near-Source Damage from Single-Hole Explosions to Seismic Waves
By Randy Martin, Jessie Bonner, Peter Boyd, Mark Leidig, Timothy Rath
We conducted the Vermont Damage Experiment in central Vermont during July 2008. Five single-hole explosions with yields ranging from 60.8 kg (134 lbs) to 122.5 kg (270 lbs) were detonated in homogeneo
Jan 1, 2010
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Innovations in Presplit Design and Highwall Control Blasting Techniques for Deep Open Pit Coal Mines
By Richard E. Danell
"There are a variety of approaches for wall control blasting in open pit mining operations. Safety forworking in the pit is the principal benefit. There are also a number of economic and productivityb
Jan 1, 1997
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Predicting Blast Vibrations More Conveniently than with the USBM Method
By R. F. Favreau, Patrice Favreau
"A blast with explosives creates vibration waves in the zone around the blast.The prediction of the intensity of vibrations is important because people in the cinity demand that the vibrations do not
Jan 1, 2015
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Electronic Detonators Technology of the Future
By Aloke Verma, R. Singh, S. Jana, C. Sawmliana, P. Pal Roy
On July 21, 2004, a trial blast using electronic detonators was conducted in India for the first time in an opencast mine at Pundi-E Quarry of TISCO, West Bokaro. Orica-IEL conducted the test using el
Jan 1, 2006
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Effects of Aggregate Production Blasting on an Adjacent 42” (1.067m) Pipeline
By John Babcock, Bryan C. Smith
In a partnership between Luck Stone Corporation and Loudoun Water, a 42” (1.067m) steel pipeline was constructed along the perimeter of an extensive permitted reserve of diabase rock Luck Stone was ab
Jan 1, 2019
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Software Blasting Tools Integrated with Electronic Initiation Systems
By Thierry Bernard, Jean Marc Laboz
This paper explains why and how integration of EIS (Electronic Initiation System) with dedicated software tools can increase benefits to blasters and at the same time simplify the design of blast sequ
Jan 1, 2000
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World-Wide Survey of Distress Blasting Practice in Deep Hard Rock Mines
By Marwan M. Mohammed, Hani S. Mitri, Wilfrid Comeaul, Baoyao Tang
In many parts of the world, rockbursts have become a major problem of mining at depth. As orebodies are being mined deeper, rockburst phenomena have become familiar to deep hard rock mines. Rockbursts
Jan 1, 1999
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Explosives Properties and Characteristics
By P D. Katsabanis
According to Persson(1) steady state detonation along a cylindrical charge can be regarded as a self propagating process in which the axial compressive effect of the shock front discontinuity changes
Jan 1, 1990