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Finite Element Modelling for Predicting Backbreak in Rock Blasting Operations.By S. Behera, K. Dey
This paper presents a methodology for finite element (FE) modelling to analyse the total deformation of rockmass under blast-load, with a focus on predicting backbreak that may occur during surface bl
Jan 1, 2024
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Blast Modeling for Underground MiningBy Gordon K. Jorgeonson
Much of the modelling of blasting operations has been devoted to simulating blasts in open pit mines and quarries . This has been the most obvious application and has been reported in many papers and
Jan 1, 1990
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Use of a Bubble Curtain to Reduce Fish Mortality during Explosive Demolition of Licks and Dam 26, Mississippi RiverBy Thomas M. Keevin, Gregory L. Hempen, David J. Schaeffer
In an attempt to reduce the potential for fish mortality during the explosive demolition of Locks and Dam 26, Mississippi River, the U.S. Army Corps of Engineers, St. Louis District explored the use o
Jan 1, 1997
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Improving Drilling and Blasting By Using TQM and Appropriate ITBy John Hutchings
Drilling and blasting is a clearly delineated work process, which has well defined inputs and outputs. Drilling and blasting is also a process with a number of steps each of which has measurable outco
Jan 1, 2004
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A New Method to Calculate the Frequency Associated with the Peak Particle Velocity of the Vector SumBy Ruilin Yang
The vector sum peak particle velocity (PPV) of blast vibrations describes the blast vibration intensity more completely than the PPV of a single component waveform. It is more logical to use a vector
Jan 1, 2015
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Are You As Efficient As You Can Be? - An Underground Paper-By Roger L. Keller
This paper examines the aspects of differing types of blasting cuts in underground headings with consideration to the reduction of number of holes and costs. At least one comparison study is related w
Jan 1, 1989
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A Multiple Blasthole Fragmentation (MBF) Model Based on Non-linear Charge Scaling, Delay Time Contribution, and Rock Dynamic FractureBy Ruilin Yang
This paper presents a fragmentation model for large production blasts. The model uses peak particle velocity (PPV) induced from the blast as a controlling parameter to predict the fragmentation size d
Jan 1, 2015
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The Fragmentation-energy Fan, a Universal Behavior of Blasted Rock?By Peter Moser, Finn Ouchterlony, José A. Sanchidrián
"Blast fragmentation data in the form of percentile fragment sizes as function of specific charge oftenform a set of straight lines in log(size)-log(energy) space that tend to converge on a common foc
Jan 1, 2017
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BURST BLASTING: Solution to a Particular Blasting ProblemBy Wilfrid Comeau
Vibrograms, which last significantly longer than the actual blast (say 10 to 15 cycles or more), may be signalling an elastic response, which is not uniquely blast related. For example, geophones moun
Jan 1, 2007
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Digital Detonators in Iron OreBy Keith Maki
This paper details a simple substitution of precise electronic timing in the holes for standard pyrotechnic delays. In addition, we wanted to use two electronics in bottom and top to test the collidin
Jan 1, 2007
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Powder Factor Analysis of Quarry Blasts Through the Fragmentation-Energy Fan ConceptBy Ian Bell
This paper investigates fragmentation in an aggregate quarry using the fragmentation-energy fan concept. Six blasts were monitored, located one behind the other in the same quarry area. The rock struc
Jan 1, 2019
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Make a Good ImpressionBy Sandra Penttinen
There are several ways to get a positive reaction from abutters to blasting projects. When you need to enter structures to conduct a blast-blast inspection, the impression you make on the structure ow
Jan 1, 2005
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Dynamic Response of Buried Oil Pipeline Caused by Tunneling BlastingBy Zheng Shuangying
The vibration effect of the buried oil pipeline caused by tunneling blasting affects the pipeline safe transportation, tunnel construction schedule and its construction cost. The dynamic response char
Jan 1, 2015
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Strain and Peak Particle Velocity as Vibration Criteria: Some ThoughtsBy Syed Haq, Kyle Optt, David Campo, Doug Anderson
Limitations on allowable levels of vibration from construction activities generally consider either annoyance or damage. While activities such as drilling and roller compaction primarily create annoya
Jan 1, 2004
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Load Transfer of Polycarbonate Blast Resistant Glazing SystemsBy Joshua Calnan, Braden Lusk, Kyle Perry
This paper presents detailed information and data regarding the load transfer characteristics of Blast Resistant Glazing Systems utilizing two different thicknesses of polycarbonate. A series of triax
Jan 1, 2014
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Delineating Extent of Cracks in Post-Blast Rock Surface Using GPR – A Case StudyBy Sayantan Chakraborty, Kaushik Dey, SaKaushik Dey tyabrata Behera
Drilling and blasting is a popular excavation technique in the drift of underground mine. Faster completion of drift reduces the gestation period and thus longer blast pulls are attempted with longer
Jan 1, 2019
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"Journal: 100 Years / MILITARY ENGINEERING (Part IV) Mining and Demolitions General Staff, Ware Office, 1910 London"By Robert Hopler
209. Nitro-glycerine is produced by the action of nitric and sulphuric acids on glycerine, and is a heavy liquid of oily appearance, of specific gravity about 1•6, varying from colourless when quite p
Jan 1, 2011
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Conformal Symbolic Regression Applied to Rock Blasting Vibration PredictionBy Anderson da Cunha Meireles, Pedro Garcia, Ernst Young, Leandro Coelho, Carlos Eduardo Soares Feliciano, Key Fonseca de Lima
Rock blasting is a crucial technique employed in mining construction and quarrying industries to fragment large rocks into smaller, more manageable pieces. However, it often generates ground vibration
Jan 21, 2025
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The Safe Use of Controlled Blasting in Construction and MiningBy Alyse Munro Hindley
The increasing negative public opinion toward blasting has led to stricter regulations and increased costs. This paper outlines alternative methods of rock excavation and the safety regulations and ce
Jan 1, 2015
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A Lightning Safety Primer for the Explosives IndustryBy Chris Vagasky
On July 10, 1926, lightning struck at Picatinny Arsenal, New Jersey, and caused the explosion of at least 600,000 pounds (272,000 kilograms) of ammunition, resulting in more than $600 million (2015 do
Jan 1, 2017