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Blast Induced Vibrations in MalmbergetBy Anders Nordqvist
LKAB operates an underground iron ore mine in Malmberget in the northern part of Sweden. Twelve different orebodies are mined today using both longitudinal and transversal sublevel caving as mining me
Jan 1, 2018
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Limestone Fragmentation Case Study Using Regular Rhythmic TimingBy Tristan Worsey, Jhon Silva
The paper discusses a limestone quarry case study that looks at change in fragmentation due to using different charge sequences when using the regular rhythmic timing method.
Feb 1, 2020
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A Reanalysis of Fragmentation Data from the Red Dog MineBy Finn Ouchterlony
"Recently detailed fragmentation data from blasts fired with electronic delay detonators (EDDs) in the Red Dog mine in Alaska were presented. They include a comparison with pyrotechnic detonators ford
Jan 1, 2012
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Blasting and Monitoring Practices for the MSDGC Deep Tunnel ProjectBy Kevin Cole, Dennis A. Clark, F William Laslow
Since 1976, the Metropolitan Sanitary District of Greater Chicago, (MSDGC), has commissioned the excavation of a tunnel system in the Chicago area, hundreds of feet below the surface in solid limeston
Jan 1, 1982
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Drone Technology Utilization to Increase Safety and Support Analysis for Blasting ProcessBy Ery Wardhana, Stefanus Jagad, Relinda Sanistya, Hasucita Tausi, Rido Situmorang
The blasting process is one of the most high-risk activities in mining operations. Shotfirers and blasting crews face hazards from slope failure, toxic gas and fumes, or unstable ground condition ever
Feb 6, 2023
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Efficient Blasting for Bench Stability and Fragmentation Results ImprovementBy Javier Illanes Pizarro, Gustavo Huerta Valer, Jorge Cárdenas Miranda
Bench stability is the basis of sustainability in an open pit mining operation. Taking care of the pit walls while maintaining fragmentation results can prove a challenge. In this study, technical pro
Feb 6, 2023
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Analysis of Sympathetic Detonation in Detonating CordBy Josh Calnan, Paul M. Holmgren, Abigail N. Styer
Detonating cord is a staple of the explosives industry, used widely in the civil and defense industries. Detonating cord is a thin, flexible plastic tube filled with pentaerythritol tetranitrate (PETN
Feb 1, 2020
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Seismic Monitoring of Production BlastsBy Klaus G. Hinzen
Seismic observations offer the only possibility for remote sensing of physical processes like shock-front spreading, material crushing and ground movement. A better understanding of these processes wi
Jan 1, 1989
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The History and Development of Permissible Explosives for Underground Coal Mining (c0bdb26c-921d-4fa8-97b7-a8bd2dbb04d2)By Robert B. Hopler
The hazards which naturally prevail in underground coal mines, always severe and unpredictable due to the loosely-consolidated strata in which coal is frequently found, are increased by the commonly-o
Jan 1, 1996
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Field Study of the Blasting Vibration Stability of Large Natrual Rock PinnaclesBy Robert A. Cummings, Francis S. Kendorski, Charles H. Dowding
During the summer of 1980, a field project was carried out to determine the stability of the beautiful and dramatic natural limestone pinnacles (locally termed "Hoodoos") at Bryce Canyon National Park
Jan 1, 1982
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The Effect of Charge Mass and Delay Timing on Airblast OverpressureBy Adrian Moore, Dominic Hooton, Alan Richards
Significant factors affecting airblast overpressure (AOP) emissions include charge mass per delay, distance from the blast site, burden, stemming height, and delay timing, topographic shielding, and m
Jan 21, 2025
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Observation and Numerical Simulation of Fly Rock caused in Bench BlastingBy Kunihisa Katsuyama, Yuji Ogata, Yuji Wada
Test blasting was carried out to study the flying characteristics of rock mass caused in bench blasting. The quantity of explosives was increased from 7.6kg to 9.1kg and the Minimum burden was changed
Jan 1, 1997
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Slope stability through the application of low-energy explosives technologyBy Jorge Cárdenas, Diego Gamarra
In previous phases of the mine, a landslide resulted in several losses in production delays. The stability of slopes in a mining operation is critical for the sustainability of the operation, as they
Jan 21, 2025
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Reducing Coal Loss During Cast Blasting At Rix’s Creek MineBloomfield Collieries Rix’s Creek Mine is an open cut coal operation located in the Hunter Valley region of Australia. The mine produces approximately 1.1 mt of saleable product per year and routinely
Jan 1, 2006
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Put Your Money on Your PaperworkBy John L. Didlinger
We all hate the paper work in keeping accurate blasting records. Nevertheless, have you ever thought what those records could show you? Think about it. Those records could show you vibrations, noise,
Jan 1, 1997
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Improving Blast Preformance with High Density Toe LoadsBy John Floyd, Larry Wardrip
A series of tests were conducted to evaluate the performance of a high density, high velocity cartridged explosive. The tests included two production blasts in a limestone quarry and two production bl
Jan 1, 2002
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Overburden Blasting Vibrations: Analysis, Prediction, and ControlBy Otto E. Jr Crenwelge, Timothy A. Peterson
We have developed a site-specific method for analysis, prediction, and control of ground vibrations induced by overburden blasting operations in surface coal mines. Field tests conducted at R&F Coal C
Jan 1, 1986
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Geotechnical Slope Remediation Via RC-drilling And “Controlled Slope Failure BlastingBy Tyler Acorn
In December of 2009 an estimated one million ton slope failure activated a 10 million ton mass impacting use of the main ramp system in the Newmont Gold Quarry pit. The failure left behind a 400 foot
Jan 1, 2011
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Improved Remediation Performance of a Contaminated Basalt Aquifer by Blast FracturingBy Adrian Moore, Bryan Goodwin, David Fales, David Lam
This paper describes the development of blasting protocols used to successfully create a 450m long blast fractured permeable trench in a basalt aquifer up to 20m thick, at a petrochemical facility in
Jan 1, 2011
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Methane-air Mixture Air-blast Approximated Using Detonating Cord in Rock Dust Dispersibility StudiesBy BruneJurgen F., Richard C. Gilmore, Matthew Schreiner, Ray Johnson
Explosive pockets of methane-air mixtures accumulate in underground coal mines and, when ignited, produce an air-blast wave that can disturb combustible coal dust on the floor, roof, and ribs. To prev
Jan 1, 2019