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High-wall Control at Anglo Gold Ashanti, Navachab MineBy Charles Pretorius, Henk Ludik
Navachab Mine experiences difficulties with pit wall stability in certain areas of the mine. The main reason for the instability is the fact that the geology comprises many joints and faults. Blasting
Jan 1, 2006
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Analysis of, Mining Explosion Performance with Multiple Sensor Data and Physical ModelsBy Robert Martin, Brian W. Stump, David P. Anderson
2We use field measurements to quantify physical processes that accompany different types of mining explosions. The data sets collected include three-component ground motion, acoustic, video and high s
Jan 1, 1998
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Advanced Blast Modeling for Mining Steeply Dipping Coal SeamsBy Dan L'Heureux, Joe Haid, Stephen H. Chung
Most coal deposits in Western Canada involve steeply dipping multiple seams. An efficient way to recover coal seams would be to drill through the seams and blast both the overlying and underlying wast
Jan 1, 1998
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A Practical Guide for the Blasting of Armour Stone or RiprapBy Alastair Grogan, Ron Elliott, Dale MacLean
Blasting for armour stone presents many unique challenges. Often, blasters get themselves into trouble when they assume that they can simply modify a production blast design to produce the required fr
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Thedaveytronic-Theintegrated Electronic Delay DetonatorBy Rapheal Trousselle
For over 5 years, Davey Bickford has been developing and testing an electronic detonator blasting system. These new-technology detonators provide more accurate timing than conventional systems that re
Jan 1, 1997
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Explosive Operations and its Regulation in the Gulf of MexicoBy D. J. Leidel
The offshore production of oil and gas resources has been active in the Gulf of Mexico since Kerr- McGee drilled the first commercial well out of the sight of land in 1947. Since then, approximately 6
Jan 1, 2002
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Using State of the Art Blast Modeling Software to Assist the Excavation of the Yucca Mountain Nuclear Waste RepositoryBy Jason Ryan, Stephen Harria
Q.E.D. (QED) is a blast design and evaluation model that allows full three-dimensional design specification including the development of unique “live” terrains and an unlimited variety of complex char
Jan 1, 2000
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Investigations of Shock Tunnel Dynamics and Energy Realization (a197a97d-a574-4dd6-b892-bc2dba4e791b)By Joshua Hoffman, Braden Lusk, Kyle Perry
This study explores how different geometries affect the shock tunnel’s performance and is broken down into three phases. Phase 1: Open arena testing in which theoretical energies produced by the deton
Jan 1, 2009
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Blast Control Measures at the Speekfontein Colliery Strip Mine Situated Close to a Major Power Situation in South AfricaBy A Rorke, B Cubitt, R Beeslaar
The recent drop in the value of the South African Rand has resulted in an increased export value for South African coal and has lead to new coal reserves becoming available for mining. Very often thes
Jan 1, 1997
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Mitigation of Loading on Floor Boards in Light Armored Vehicles Subjected to Explosive LoadingBy Robert Benedetti
This paper describes various mitigation methods in order to reduce the maximum acceleration of the floorboard of hulled vehicles when explosive charges buried in water saturated sand were detonated be
Jan 1, 2012
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Positioning of Mobile Mining Equipment Using GPS Technology & Mining and Information, Defining the Need"AQUILA Mining Systems Ltd. is a Canadian company that designs and develops monitoring, control and navigation systems for the surface and underground mining industries. In 1992, AQUILA Mining Systems
Jan 1, 1997
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Journal: Effects of Temperature and Humidity on Airblast Sound Pressure LevelsBy Randal Martin
Recently, questions regarding the influence of atmospheric temperature and humidity levels on airblast levels have arisen at a number of blast sites. Humidity is alleged to have contributed to high le
Jan 1, 2001
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Developments of Granular Emulsion ExplosivesBy Takuya Taguchi, Toshihiro Ogata, Atsuio Inoue, Shigeyuki Sasaki
Highly improved drilling machines and mucking machines have been used for the underground construction. To have rapid construction, the roles of blasting operation ha ve been growing more important. A
Jan 1, 2005
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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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Quality-Assurance (to ISO-9001 Level) for Quarry Blasting in the Urban EnvironmentBy Wilfrid Comeau
This paper deals with the concept of a Quality-Assurance Manual, to the ISO-9001 Level, for quarry blasting in the urban environment. A case history of the incident, which led to its development, is p
Jan 1, 2003
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Concepts for Better BlastingBy William Reisz
Over the years as surface mining operations have become more sophisticated, angle drilling has become a more popular blast design technique, especially in areas where overburden and stripping ratios h
Jan 1, 2002
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Field Applications and Quantification of Electronic Detonator TechnologyBy Douglas Bartley, Brian Wingfield, Robert McClure
Recent studies and limited tests indicate favorable results utilizing high accuracy electronic detonator technology over conventional non-electric pyrotechnic systems. This study discusses the applica
Jan 1, 2001
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Common Test Methods Used to Measure Properties of Commercial ExplosivesBy Gary Eck, Kevin Tallent
Over the past decades, the science of energetic materials has advanced dramatically in both the fields of military munitions, as well as industrial explosives. Out of necessity, test methods to measur
Jan 1, 1998
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Methods of Evaluating and Predicting FragmentationBy Claude Cunningham
The primary reason for blasting is to fragment rock. In production blasting, the fragment sizes produced are known to exercise an overwhelming influence over working costs: handling costs and tonnage
Jan 1, 1995
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Explosively Loaded Vessel for Dynamic Experiments at Advanced Photon SourceBy Christian J. Sorensen, Christopher Armstrong, Andrew Matejunas
A team consisting of junior and senior mechanical engineering students at New Mexico Tech worked on the design of an explosively loaded vessel, with a maximum load of 15 grams (0.53 oz) TNT equivalent
Jan 1, 2015