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New Firing Method for Underwater Blasting (Remote-Controlled Blasting System by Electromagnetic Firing Method)By Takeo Ueda, Masashi Nakano
We have developed a new blasting system remotely controlled by an electromagnetic firing method, which has proved advantageously applicable to sites where rapid tidal current or deep water may cause s
Jan 1, 1983
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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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Earth Motions Resulting from Large Distributed Chemical Explosive DetonationsBy D Maxwell Ellett
This report presents an evaluation of knowledge concerning a process used in predicting ground motion resulting from large scale conventional explosive detonations, The shots were set off in Arizona i
Jan 1, 1976
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Journal: A Public Relations Plan Based on Structure Generated Sounds and Public InputBy Ken Eltschlager, J Silva Castro, J. M. Hoffman, Braden Lusk
This case study focuses on analysis of sounds inside a house induced by blasts as result of surface mining coal in West Virginia and how to better communicate technical information to the public. The
Jan 1, 2012
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Measuring Blast Induced Damage by Applying the MASW Geophysical MethodBy Charles Zdazinsky
Many blasting applications in the mining industry demand that the hard rock being blasted remains structurally competent. For example, pre-splitting is a common technique to reduce fracturing, and ope
Jan 1, 2011
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Blast Optimization through Long Term Fragmentation AnalysisBy Florian Bauer
The Fording River mine in British Columbia produces hard coking coal in an open pit operation. Coal seams are exposed by blasting overburden and digging blasted muck with rope shovels. The drilling an
Jan 1, 2014
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Blasting a Narrow Orebody at Bong Mines, LiberiaBy Dieter Froelich, Giles Turcotte
In the near future, Bong Mining Company (BMC) will start mining a new deposit known as Zaweah II which is a narrow iron orebody requiring multiple row blasts with the bench floor as a free face. This
Jan 1, 1980
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Prediction and Determination of Explosive-Induced FractureBy J R. Hearst, T R. Butkovich
Explosive-induced fracturing and permeability enhancement far from a free face were studied. A one-dimensional computer program, SOC, was used to predict the total failure-associated distortional stra
Jan 1, 1976
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Predicting the Envelope of Damage Resulting from the Detonation of a Confined ChargeBy Jason M. Ryan, T Michael LeBlanc, John H. Heilig
"Drill trajectory deviation is a recurring problem in vertical retreat stoping operations. As a result of thisdeviation, 60 kilogram (165 millimetre diameter) and 103 kilogram (203 millimetre diameter
Jan 1, 1996
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Application of the NIOSH-Modified Holmberg-Persson Approach to Perimeter Blast DesignBy Chick Kerkering, Stephen Iverson
Perimeter control blasting is common in civil construction projects but not as common in mining. A poorly designed and executed underground mine development blast design can result in unwanted wall ro
Jan 1, 2008
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Underground Longhole Blasting near Large-diameter Booster FansBy Norm Disley, Kingsley Hortin, Gertjan Bekkers
As part of the expansion of the Kidd Creek Mine to 2,682 meters (8800 feet) below surface, two largediameter 3000kW (4000HP) booster fans were installed at the 6000 level. Shortly after commissioning
Jan 1, 2008
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Review of Equations of Motion of Linear Shaped Charges LinerBy Seokbin Lim
According to published literature, the equation of motion of linear shaped charges (LSCs) has been investigated as early as the 1960s in a few research organizations. However, due to the comparatively
Jan 1, 2014
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GEM (Geologic Element Motion) Blast Heave Modeling with More Element Shapes and Energy PartitioningBy Stewart A. Silling, C. Mick Lownds, Dale S. Preece, Ali Bhuiyan
GEM (Geologic Element Motion) is a Distinct Element Method (DEM) for modeling blast-induced heave. It was developed with a very fast computational algorithm that efficiently treats many different elem
Feb 6, 2023
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Optimized and Calibrated Migration to HXNBlast at Minera San CristóbalBy Javier Castaneda, Luis Zozaya, Noel Huarachi, María Rocha
The objective of the project was to implement and calibrate drill and blast models supported by Geotechnical and Geological models as well as the mine and operation characteristics. The models would t
Feb 1, 2020
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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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Evolution of the AvalauncherBy John Brennan
The Avalauncher has been an integral tool for avalanche mitigation work for close to 50 years. With their ability to place a kilogram of high explosives up to two thousand meters away, they routinely
Jan 1, 2009
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Retardation of an Underground Coal Fire in an Industrial Area by Means of BlastingBy Claude Cunningham
Late in 1982 a fire began in the shallow, abandoned workings of the Uitkyk Colliery near Witbank, South Africa. Urgent measures had to be taken to quench the fire, before the surface caving it caused
Jan 1, 1984
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Techniques of Precision Blasting in the Excavation of Drilled PiersBy George Young Mosteller
This paper is summary of the practical solutions developed in the excavation of drilled piers (caissons) at GPCo's Plant Scherer, Juliette, GA. Plant Scherer is a 3,245 Megawatt Fossil Fuel Powerhouse
Jan 1, 1980
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Building and Structural Blasting in HungaryBy Sandor Nagy
The Explosive and Blasting Department of the Hungarian Mining Research Institute is responsible for the research and development of industrial applications of explosives. Appropriate explosives techno
Jan 1, 1977
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Blasting Factors Influence the Choice of Blasthole Size for QuarryingBy N L. Thomas
Hole size affects many factors which directly influence fragmentation in the muckpile and hence, the cost effectiveness of the entire operation. These factors include production capability, explosives
Jan 1, 1986