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Mine Blasting Safety: A Century in ReviewBy Harry Verakis, Thomas Lobb
This paper summarizes the course of mine blasting safety, particularly in underground coal mining, in the USA for over a century of mining operations. During the late 1800's and especially in the firs
Jan 1, 2009
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Tennessee's Largest Pipe InstallationBy James R. Houston, Wendel Clay Chaffin, John Loviza
During the spring and summer of 1993 the largest pipeline in Tennessee was installed as part of the upgrading of Nashville's sewage needs through the year 2035. This new 3.3 million dollar outfall pro
Jan 1, 1995
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HMX Based Electronic Initiation System for Blasting in High Temperature Ground and/or Extremely Reactive Ground Phase 2 – Blasting Campaign in Western USABy Karl Dufresne
Blasting in geothermally high temperature ground and/or extremely reactive ground is an increasing common challenge for surface and underground mines. Many current PETN based non-electric and electron
Jan 21, 2025
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Tunneling in a Sensitive EnvironmentBy Scott Stephenson
Making a tunnel through solid rock can sometimes be a dangerous task. Many things must be considered in order to complete such a task safely, and efficiently. Prior to starting things must be known su
Jan 1, 2009
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A New Digital Centralized Blasting SystemBy Peter Reinders, Dirk Hummel
This paper describes a new digital Centralized Blasting System (CBS), which is currently being introduced into underground applications. The CBS makes use of the field-proven detonator and equipment t
Jan 1, 2004
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A Blast Design Analysis for Optimizing Productivity at INCO Limited's Thompson Open PitBy Nan H. Lee, Christopher J. Hunter, Stephen H. Chung
Several factors affect the productivity of mining operations. The geological structure of a mineral deposit and the fragment size of blasted material are considered to be most influential. It is well
Jan 1, 1991
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Detection of the Initiation Sequence Using EMF at the Yanacocha Mine in Perú.By Romel B. Villanueva
At the Yanacocha gold mine, in the Andes of northern Perú, the first instrumental tests were carried out in October 2019 to detect the initiation sequence of a production blast by detecting the EMF si
Jan 21, 2025
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Improved Drill and Blast Designs Free $3.6M of Ore for Surface Copper Mine Tacio Ferreira, Dyno NobelBy Tacio Ferreira
A surface copper mine in the Western United States faced challenges in recovering rock and ore from final walls because of geotechnical constraints that require restrictions on methods for loading bla
Jan 21, 2025
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Innovations for Improving Safety in the Mining EnvironmentBy Andre Pienaar, Larry Wilson
Destruction of waste emulsion by blasting has been proven to be risky and disastrous incidents have been seen when using this practice. Our R&D department in conjunction with Lake International has de
Jan 1, 2010
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Explosive Avalanche ControlBy Braden Schmidt
The following full paper will go into the products, techniques and people who work in the avalanche control industry giving insight to the other members of the ISEE an overview of the niche blasting t
Feb 1, 2020
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Automatic Blast Design Based on Autonomous DroneBy Thierry Bernard
New technology to automatically design a blast based on autonomous drone. The process of flying a drone, calculating the 3D cloud of points, generating the critical face profiles and placing holes aut
Feb 1, 2020
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A Coyote Blast at Rhone-Poulenc's Maiden Rock Silica QuarryBy John C. Adams, Darrel D. Porter
After conventional drill and shoot methods were determined to be unfeasible due the fractured nature of the ground, a "coyote" blast was designed to produce 250,000 tons of rock from Rhone-Poulenc's M
Jan 1, 1993
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Demonstration that an Efficient Blast Depends as Much on Easy Mucking as on Good FragmentationBy R. F. Favreau, Patrice Favreau
"Ever since we have started to assist those responsible for blasting with blast simulation studies, we havebecome aware of an interesting aspect, namely that in 90 % of cases we are asked ‘‘Can you se
Jan 1, 2017
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Blast Design Analysis for Reduction of Boulders ProductionBy Michael Karmis, Syed Muhammad Tariq, Zeshan Hyder
This paper analyzes the blast design for lime stone quarries of two major cement plants in Pakistan. The production blast of these quarries was resulting in excessive boulders production. At some inst
Jan 1, 2012
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Utilising a Dual Belly Auger MPU to Manufacture Bulked Inhibited ExplosivesBy Jason Rock, Rob Thompson, Lee Julian
This paper presents an innovative shift in inhibited bulk products with specific reference to their manufacture and application.
Feb 1, 2020
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Safety Challenges of the '90sBy Milos J. Bila
I would like to discuss today several safety topics that we at Nobel feel are going to be particularly critical to all of us who are involved in the manufacturing, transportation, storage and use of c
Jan 1, 1992
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Modernizing Operations: Leveraging GIS in Drilling, Blasting and Quarry ApplicationsBy Dr. Anurag Agrawal, Steve Franklin, Clint Zimmerman, Elijah Williams
In a time when data has become a highly valued commodity within many mining and quarry operations, managing large amounts of current and historical information can be difficult. If not managed properl
Jan 21, 2025
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Blast Vibration Monitoring, Prediction and Control at Old Cliffe Hill QuarryBy Rob Farnfield, Mark Pegden
Old Cliffe Hill quarry produces between 4 and 5 million tonnes of crushed granite per year and is located in the county of Leicestershire in the East Midlands region of England. Blasting is carried ou
Jan 1, 2010
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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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The Use of Handidet Non-Electric Detonator Assemblies to Reduce Blast-Induced Overpressure at AECL's Underground Research LaboratoryBy D P. Proudfoot, S G. Keith, D P. Onagi
A number of aspects of the Canadian concept for nuclear fuel waste disposal are being assessed by Atomic Energy of Canada Limited (AECL) in a series of experiments at its Underground Research Laborato
Jan 1, 1996