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Disruption of the Powder ColumnBy Jack Eloranta
"Unwanted, dynamic interaction of adjacent blastholes is a well-recognized phenomenon. Timingschemes and products are selected to minimize adverse effects. Large diameter, surface blasting is less pro
Jan 1, 2016
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HDAN and Gasified Emulsion Blends Improving Blasting at Peruvian MinesBy Romel Villanueva L.
"Peru does not produce ammonium nitrate; nevertheless it is a large consumer of both, porous prill (PP) and high-density (HD) varieties. Explosives cost is an important preoccupation in Peru, due tofl
Jan 1, 2016
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Technology for Risk Management and Decision Making in Civil ExplosivesBy Johan Hawinkel
This paper explores the journey through time of technology in the civil explosives market to provide testing, measurement, analysis and control tools. This ultimately leads to better decision-making,
Feb 1, 2020
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Dynamic Pressure Study to Minimize Misfires at Pueblo Viejo MineBy Ricardo González Dumuihual, Carlos Scherpenisse
A monitoring campaign to record dynamic pressures generated by detonation of a single blasthole was implemented at Barrick Gold´s Pueblo Viejo Open Pit mine (PVDC), located in the Dominican Republic .
Feb 1, 2020
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Method of Blasting Using Air Tubes Charged in a BlastholeBy Dae-Woo Kang, Sang-Wook Kim, Shin Lee
The Air-tubes blasting method is provided in which a series of aligned boreholes are charged with explosive s and air tubes in a predetermined blasting pattern. The air tube is composed of cylindrical
Jan 1, 2005
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Technology for Risk Management and Decision Making in Civil ExplosivesBy Davey Bickford, Johan Hawinkel
Blasting and the use of civil explosives are a critical step in the mining process. Good decisions provide significant downstream benefits and create a safe and sustainable working environment, while
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Anisometric Blast Wave Propagation of Geometric Charges in Breaching ApplicationsBy Steve Linehan, John Toedter, Kelly Williams, Mark Herman, Laura Connor, Catherine E. Johnson
Minimum safe distance (MSD) calculations are used widely in military applications to determine safe standoff distances for breaching personnel. Accurate safe distances and an understanding of blast wa
Feb 6, 2023
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Solving Blasting Safety Hazards with Advanced TechnologyBy Ronald W. Roberts
For years, blasters have experienced near-misses, injuries, and yes, even fatalities as a result of the dangerous nature of our business. Yet, some blasters continue to portray the immortal attitude:
Jan 1, 1996
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Factors Driving Continuous Blasting Improvement At The Lafarge Ravena PlantBy David Lilly, Robert Ethier, David Bremer
The Lafarge Ravena Cement Plant in Ravena, New York demonstrated continuous and extraordinary improvement in productivity during the past several years. The factors driving continuous improvement at t
Jan 1, 2007
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"Optimized Energy Distribution in Bench Blasting Through Measurement Techniquesand “Multi Energy” Explosives"By Pierre De Pasquale, Gilles Jauffret, Ricardo Chavez
"When blasting in quarries or mines, the main source of inconsistent results is directly related to thenon-homogeneous energy distribution through the rock-mass volume. This variation has differentori
Jan 1, 2016
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Causes for Dangerous Fly Rock from BlastingBy R. F. Favreau, Favreau Patrice
"The economy profits from the rock excavated in mines and quarries and the excavations required for the construction of roads and buildings. However such excavations are achieved by blasting withexplo
Jan 1, 2016
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A Review of Contemporary Blast Design Data and Rules of ThumbBy David La Rosa, Matthew Craft, Lee Julian
Rules of thumb are ubiquitous in blasting. Typically presented as ratios, they assist with the initial assumptions of blast design and provide guidance for best practice. Examples include the blast ho
Feb 6, 2023
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Underground Remote Firing SystemBy Tom Paynter
In an underground mining environment, the primary method of firing a blast is using a combination of an electric detonator and a detonating cord to initiate the Nonelectric detonators. This method has
Jan 1, 2017
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Reducing eyebrow break caused by rock blasting in Malmberget mineBy Zong-Xian Zhang
In sublevel caving mines, serious eyebrow break usually gives rise to lower ore recovery, higher dilution, and worse safety for the people working in the field. For example, chargers must go near the
Jan 1, 2011
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Quantifying NOx Fume Events in Blasting using Drones: Improving Environmental Performance and Public PerceptionBy A. Lindo, M. Held
The formation of NOx fumes is an undesired occurrence and is dependent on a variety of variables. Methods for detection of such fumes with blast analysis tools are available using color schemes for gr
Jan 1, 2024
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Design/Build Highway Blasting - Case StudyBy Cathy Aimone-Martin, Frank Achuff
The New Mexico Department of Transportation (NMDOT) and the Federal Highway Administration (FHWA) have let a contract to Sierra Blanca Constructors for a design / build contract along 38 miles US 70 i
Jan 1, 2004
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Stem Induced Fracturing RevisitedBy Uli Leiste
Two papers are presented which examine Air Deck Blasting, one from a computational aspect and the other from a shock aspect.
Jan 1, 2016
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Perimeter Control Utilising Electronic DetonatorsBy John Wall
The use of electronic detonators in civil tunnelling applications, to reduce vibration is small firings has been successfully utilised for a number of years. As part of the mining industry’s commitmen
Jan 1, 2012
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Underground Blast Monitoring and Rock Mass AnisotropyBy Jody Todd, Ernesto Villaescusa, Ronald Lachenicht, Kelly Fleetwood
In the underground environment, characterisation of a rock mass during the mining cycle becomes increasingly difficult due to a lack of rock mass exposure for measurement or observation. In most cases
Jan 1, 2008
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Shockwave Uniformity Associated with Various Free Air Burst ConfigurationsBy Jacob Miller, Phillip Mulligan
"Measuring the blast pressure associated with an explosion suspended above the ground (Free Air Burst)is a common research objective in Explosive Engineering. Theoretically, the shockwave from a Free
Jan 1, 2017