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The Use of Fast Fourier Transform Techniques in Blasting AnalysisBy Mark S. Stagg, Stephen A. Rholl
The U.S. Bureau of Mines has developed computer software which uses fast Fourier transform (FFT) techniques to evaluate blasting data. The software is useful because it allows blasters to evaluate 1)
Jan 1, 1995
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Observation of Flyrock at Several Mines and QuarriesBy John W. Kopp
The U. S. Bureau of Mines investigated flyrock and burden movement from blasting at several limestone and basalt quarries in the upper midwest. Blasts have been studied at 14 different sites using hig
Jan 1, 1994
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Instrumenting Delay-Blast Malfunctions in Underground CoalBy Michael S. Wieland
This report discusses the U.S. Bureau of Mines research regarding the desensitization and malfunction of cap-sensitive explosives deployed in underground coal mines. Delay blasting in underground coal
Jan 1, 1993
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Precision-Scale High-Explosive Water Shock ExperimentsBy Charles E. Joachim, Christo V. Lunderman, Charles R. Wdch
The U.S. Army Engineer Waterways Experiment Station (WES) recently conducted a series of precision-scale water shock experiments which consisted of the detonation of several 8-gram, 10-gram, and 12-gr
Jan 1, 1998
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Blasting Next to an Unsupported Road using Electronic DetonatorsBy Tony Rorke, Sydney Thabethe
A large overburden blast was carried out at Douglas Colliery, Middelburg Mine Services, close to a national road in South Africa. The road is a busy route between Witbank and Bethal and damage to the
Jan 1, 2004
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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
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The Smart Application of Explosives for Drill to Mill (D2M) OptimizationBy J. Silva, M. Kotraba, F. Pontanilla
Blasting is the application of highly complex science that, in some cases, could be viewed as an art. Many variables are involved in a blast, including geology, pattern design, timing and firing seque
Jan 1, 2024
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Optimization of Blast Evacuation Zones using the "Exclusion Zone" ModuleBy C. Morel, P. Fredes, L. Rojas
This article presents a comprehensive study on the development and application of the specific module called "Exclusion Zone" created by Orica to determine blast evacuation exclusion zones. This modul
Jan 1, 2024
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Blasting Near a CrusherBy Scott G. Giltner, Alex Schwenk
Blasting within 250 ft of a crusher was successfully executed through the application of electronic detonators, 3-D imagery, signature hole analysis, custom loading of blast holes. The blast was well
Feb 1, 2020
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Epic Blast of 275 US Ton (250 tonnes) Sets Benchmark in Opencast Mining Arena in Environmental Sensitive Area With Desired Fragmentation and Muck Profile.By Tapas Kumar Mukherjee, Sujit Kumar, Sanjay Kumar Singh
This paper dwells on the epic blast conducted at Tata Steel’s captive coal mine in India and the insights drawn from it. Optimal blast design parameters had to be ascertained for operating benches (6.
Jan 1, 2019
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Median and Mean in the Kuz-Ram ModelBy CVB Cunningham
"The Kuz-Ram model as originally proposed included an error in assuming that the mean fragmentsize predicted by Kuznetsov’s equation was actually the 50% passing size. In 2003 Spathis began discussion
Jan 1, 2016
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Aquarium Tests to Study the Detonation Behaviour of a Non-ideal Explosive.By M. Araos
Non-ideal explosives can be characterised by different methods like velocity of detonation measurement, double pipe tests, underwater tests, aquarium tests, etc., to name a few. Both aquarium and velo
Jan 1, 2024
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Detailed Planning Underscores Expansion of Vulcan's Chattanooga QuarryBy R L. Mayville
The author explains why the strategic location and important limestone reserves at Chattanooga Quarry led to a decision to extend operating life by continued benching down to lower levels. He discusse
Jan 1, 1984
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Swedish Cautious Blast Excavation at the CSM/ONWI Test Site in ColoradoBy Roger Holmberg, William Hustrulid
Swedish cautious blasting techniques were used to excavate a room at the CSM Experimental Mine in Idaho Springs, Colorado,as part of a ONWI/DOE sponsored nuclear waste disposal research program.
Jan 1, 1981
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The Effect of Prill Specifications on Emulsion-ANFO Blends (dfcf65b3-c26f-475a-ba27-2ec8841d710f)By Greg S. Williams, David L. McDorman, Richard W. Givens
This paper examines the effect of prill size consistency, internal particle density, and oil absorbency on Ammonium Nitrate Fuel Oil (ANFO)-emulsion blends. By analyzing these physical properties of p
Jan 1, 1990
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Underwater Blast Pressure Monitoring for the Columbia River Channel Improvement ProjectBy Cathy Aimone-Martin, Kristin Dunlap Kolden
Blasting was conducted for the Army Corps of Engineers (Corps) in the Columbia River near Saint Helens, Oregon during 2009 and 2010 to deepen the navigation channel as a final phase of a dredging proj
Jan 1, 2014
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Dynamic Mud Flow Effects on Emulsion Explosives in IndonesiaBy Garfiansyah Rayes
In 2023, an Indonesian coal mine experienced significant contamination of an emulsion blend explosive by dynamic mud and water flow, triggered by flooding due to exceptionally high rainfall. This intr
Jan 21, 2025
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Advance Blasting using Drone Mapping and AI for Comprehensive Blast Performance AnalysisBy Dr. Anurag Agrawal, Fathur Rozaq, Nella Lubis, Relinda Sanistya, Herry Saputra, Rudolf Sitorus
In mining operations, basic drone applications such as pre- and post-blast photo comparisons, blast video recordings, and sample-based fragmentation analysis are often used to assess blast performance
Jan 21, 2025
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A Long Round Test in Conventional Room and Pillar MiningBy Thomas Barkley
Mining tradition holds that a parallel round underground can not be any deeper than it’s smallest face dimension. ln other words, a mine using a 12’ (3.7 m) high by 24’ (7.3 m) wide room and pillar mi
Jan 1, 2000
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Blasting a Diversion Tunnel through the Abutment of a "Meta-Stable" DamBy Jennifer Williams, Donald J. Berger
Originally built between 1913 and 1916, the Ashton Dam & Hydroelectric Facility has experienced various seepage and piping incidents since completion. Ashton Dam is located within 15 miles (24 km) of
Jan 1, 2014