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Response of a High-Pressure Natural Gas Pipeline to Coal Mine BlastsBy Ed Clah, Catherine Aimone-Martin
The vibration response of a 30 in. diameter high-pressure (845 psi) natural gas pipeline to 11 coal mine blasts was measured. The X-52 steel pipeline was buried 7 ft. below the ground surface. Ground
Jan 1, 2003
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New Training Technologies (Interactive Video)By Roger Scarr, Richard A. Walker
Interactive video is the combination of computer and laser disc -technologies that allows for the storing of 54,000 single images or 30 minutes of video with the ability to access any segment or singl
Jan 1, 1990
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Chemical and Physical Factors that Influence No. Production During Blasting - Exploratory StudyBy James Rowland, Isaac Zlochower, Richard Mainiero, Michael Sapko
The National Institute for Occupational Safety and Health (NIOSH) carried out exploratory laboratoryscale studies to identify factors that may contribute to nitrogen oxides (NOx) production associated
Jan 1, 2002
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Description of Damage Constitutive Model as Documented in Pronto3D Manual 3/89By Billy J. Thorne
The damage model in PRONTO simulates the dynamic fracture behavior of brittle rock. It is based on work started by Kipp and Grady, [lg] continued by Taylor, Chcn and Kuszmaul [I91 [20] and recently.mo
Jan 1, 1989
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Preventing and Dealing with Blasting ComplaintsBy Michael Ostrowski
While the words “explosives” and “blasting” cause insurers to become apprehensive, skilled contractors using modern techniques under controlled conditions rarely cause serious damage or injury. Howeve
Jan 1, 2003
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A Study on Post Blast Generation of Nitrogen DioxideBy : D. Lawrence
Certain blasting applications are more prone to the generation of significant levels of nitrogen dioxide post blast fumes, more commonly referred to as after blast smoke, generally ranging in color fr
Jan 1, 1996
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Iron Ore Blast Designs and Cap Testing at the Minntac MineBy Jack Eloranta
To improve control of blasting, tests were performed to assess non-electric cap accuracy. Simultaneous testing using a Velocity of Detonation Recorder (VODR), Red Lake Lo-Cam and an Instantel DS-677 b
Jan 1, 1992
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Blasting in the New Mellinnium: Reactive Versus Proactive SafetyYou DecideBy Steve Dillingham
Change occurs all of the time. In fact, it’s fair to say that change is a constant. Sometimes the change is inconsequential, but sometimes the change impacts us d i rectly and severely. Take regulatio
Jan 1, 2003
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“Blasting Effects on Water Wells and Pipelines”By Rachel Bernau
Water wells, aquifers, and pipelines rarely incur damage from nearby blast vibrations. Extensive ground vibrations may cause a drop in the water table thereby changing an aquifer’s structure or drying
Jan 1, 2001
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The Influence of Geology on Blasthole Deviation (0b527217-6b23-477f-8c0b-03e530d5c921)Blasthole deviation is a frequent, well documented and undesirable occurrence in mining operations. It is caused by the drill string mechanics, operating variables and the interaction between the dril
Jan 1, 1996
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Blasting in the New Mellinnium: Planning for the UnexpectedBy Steve Dillingham
The horrific events surrounding September 11th left Americans with a feeling of sudden helplessness...the shock of being unprepared and powerless. From this tragedy, we can understand the need to prep
Jan 1, 2003
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Ultimate Technological Combination in Electronic Blasting, A Conclusive Contribution to Blasters’ Health & SafetyBy T. Bernard, P. Dozolme
Electronic initiation devices appeared on the market more than 15 years ago and have definitely changed the rules of blasting. It becomes clear that this technology represents a powerful alternative t
Jan 1, 2006
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The History and Development of Permissible Explosives for Underground Coal Mining (99bcf922-54c7-4892-afa2-e6992e96fe29)By Robert B. Hopler
First, a definition: “an explosive is called a permissible explosive when it is similar in all respects to the sample that passed certain tests by the national Bureau of Mines, and when it is used in
Jan 1, 1995
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Drilling and Blasting Trends into the 21st CenturyBy John Dean Smith
In order to discuss problem solving techniques for the future. we must first review the past. This paper will discuss the drilling and blasting problems and techniques that were used by .Imax Coal in
Jan 1, 1991
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How Things Have ChangedBy Lance McAnuff
The year 2001 coincided with the forty-fifth year of blasting-control specialization by the author. Commencing with the construction of the Saint Lawrence Seaway System in 1956 and continuing until th
Jan 1, 2002
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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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The Influence of Oxygen Content and Surroundings on the Heats of Explosion and Detonation of Organic ExplosivesBy Edward Barrody
There are wide variations in the values of heats of explosion and detonation as reported in literature. These values are not “stand-alone” or sole properties of the explosives. Specifications of the c
Jan 1, 2003
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Emulsion Based Cast Booster - A Priming SystemBy A. K. Mishra
The mineral industry is leading towards a technology driven optimization process. Drilling and blasting are such unit operations in a mine, which can alter the balance sheet of the mine if not planned
Jan 1, 2005
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Economic Optimization of the Blasting-Crushing-Grinding Comminution ProcessBy Kai Nielsen
The paper presents the results of several industrial and laboratory blasting, crushing and grinding tests and experiments investigating how blasting can influence the subsequent crushing and grinding
Jan 1, 1998
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The Development of Methods for Minimizing the Overbreak in Tunnel BlastingBy Dong-Hyun Kim Kim, Tai-Ro Lee, Young-Hwa Seo
Overbreak occurred inevitably in a tunnel excavation, is the main factor for increasing cost and period in tunnel projects. Furthermore the damage to the remaining rock mass related to the overbreak c
Jan 1, 2003