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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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Emperical Characterization of Oil Shale Fragmentation ExperimentsBy P Wapner, C Lo Edwards, S CO Schmidt, J N. Johnson, R Oliver
Shale oil recovery rates that can be achieved in underground in situ retorts can be strongly influenced by the shale breakage and fragment-size distribution achieved during rubblization. Since the fra
Jan 1, 1979
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Amplitude and Frequency Variation of Vibration Wavelets Associated with Overlapping Wave TrainsBy Edward J. Walter
A vibration record is a complex of motions resulting from a combination of direct, reflected and refracted seismic energy that originated at a blast source. Multiple hole blasting using delays further
Jan 1, 1989
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Blasting Optimization Using Autonomous Fragmentation Monitoring SystemBy B. Corrêa, M. Cavalcante
A large open pit iron ore mine in Brazil, which has a heterogeneous lithology, faces a challenge in defining drill and blast patterns to achieve the expected results. The mine needed to obtain an aut
Jan 1, 2024
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Model Studies of Loading Capactiy as a Function of Fragmentation from BlastingBy Kai Nielsen
Drilling and blasting design results in a fragmentation that will have an important economic influence on all subsequent operations such as loading, transport secondary blasting and primary crushing.
Jan 1, 1987
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New Model for Realistic 3D Blast SimulationBy BernardThierry
To be able to precisely predict the result of a mine blast before pressing the button is a goal for many blasters due to the environmental and economic constraints of our century. Based on the fundame
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Blast Control Using Accurate DetonatorsBy P D. Katsabanis, K Steeves, D Dombrowski
Accurate electronic detonators with firing time accuracy within 100 microseconds of the nominal have been used to control blast results in terms of fragmentation, vibrations and wall control. Axisymme
Jan 1, 1995
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Small Scale In-Rock Precompression Testing: Effects of Delay TimingBy J J. Mullay, G W. Anderson, C J. McFinley, J F. VanNorman, C J. Kefer
Previous work has shown that testing of precompression effects conducted on a small scale under simulated field conditions in actual rock provides a reasonable model for the evaluation of explosives a
Jan 1, 1994
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Electronic Detonator Success: An African StoryBy William McFerren, Pragasen Moodley
In contrast to global trends, African, especially South African, surface mining operations have shown a significant rate of adoption of Electronic Detonators (ED’s) over the last few years. Proven ben
Jan 1, 2004
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Magazine Propagation Model in Quantitative Risk AssessmentsBy Harley Cheema, Brandon Fryman, John Tatom
A new magazine propagation model has been proposed by the IMESAFR Science Panel for eventual implementation into the IMESAFR QRA program. Initial results from this QRA propagation model are now availa
Feb 1, 2020
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Explosives Malfunction from Sympathetic Detonation to Shock DesensitizationBy C Yeung, G Fitz, R Heater, P D. Katsabanis
Explosives malfunction due to shock waves is a serious concern for successful blasting results. Malfunction can range from sympathetic detonation to desensitization and modification of firing times of
Jan 1, 1994
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Air Decking Technique for Secondary/Boulders BlastingBy Michael Karmis, Syed Muhammad Tariq, Zeshan Hyder
Secondary or boulders blasting is a regular feature of quarrying operations in Pakistan, especially in cement and stone crushing industries. The main reason for secondary blasting is the production of
Jan 1, 2012
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Integrated Software Tools and Methodology for Optimization of Blast FragmentationBy Kirstin Girdner, Vicki Seppala, Tom BoBo, John Kemeny, Mike Higgins
Optimal blast fragmentation is fundamental to all phases of comminution. Changes in blast design may affect efficiency and productivity of downstream processes such as crushing, milling and leaching,
Jan 1, 1999
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Application of Underground Pre-Splitting in Butte, MTBy M. Gebhardt, J. Johnson, S. Rosenthal
The use of presplitting applications in an underground mine setting is a method of reducing overbreak in the rib and back when blasting occurs. Presplitting performed at the Underground Mine Education
Jan 1, 2024
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Parameters Affecting the Thermal Behaviour of Emulsion ExplosivesBy Robert C. Fouchard, Gordon Chalmers, David E. G. Jones, Ivana Alilovic, Phillip D. Lightfoot
There have been numerous international instances over the last several years in which pumping emulsion explosives has resulted in accidents, apparently as a result of increased thermal sensitivity und
Jan 1, 2000
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A Laboratory Study of Explosives Malfunction in BlastingBy P D. Katsabanis
Explosives malfunction due to shock waves is a serious concern for successful blasting results. Malfunction includes sympathetic detonation and desensitization of explosive charges as well as the modi
Jan 1, 1995
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Prediction of Ground Vibration Produced from Bench BlastingBy Gungor Tuncer, Ali Kahriman
"In bench blast design, not only the technical and economical aspects, such as block size, uniformityand cost, but also the elimination of environmental problems resulting from ground vibration and ai
Jan 1, 1999
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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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Threshold Shock Initiation Parameters of Liquid Phase Ammonium NitrateBy Allan King
Ammonium Nitrate (AN) is most commonly encountered as either a prilled solid or a highly concentrated aqueous solution, with or without organic ( e.g amine) nitrates. Under certain conditions of fire
Jan 1, 2008
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Influence of Thermodynamics on the Calculation of Energies of Commercial ExplosivesBy J P. Tidman
The demand for more data on the detonation properties of commercial explosives grows as blasting becomes a more exact science. Proper use of this information by blasting engineers depends on the appre
Jan 1, 1981