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An Oriented Explosion Damming in Mudanjiang River No 2 Power Plant in 1979By D P. Yang, Yang R. G
The laws of throwing and heaping of engineering blast are important for making use of throwing and heaping of thrown body to form certain shape, such as building dams by directional blast. The article
Jan 1, 1999
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Challenges of Drilling and Loading 30 and 48 Inch Poduction Blast Holes in a Unique Oilsands EnvironmentBy David P. Reddick
"Suncor Inc. Oilsands Group mining operation in Northern Alberta, Canada, has been blasting to loosen the oilsands to increase production and decrease maintenance of the bucketwheel excavators for ove
Jan 1, 1992
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3000t Controlled Chamber Standing ShotBy He Guangyi
Combining living examples, the paper introduces the controlled chamber standing shot of more than 3000t explosives initiated at one time with Nonel under complicated circumstances and the experience o
Jan 1, 1998
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Critical Blast Design Parameters for Construction BlastingBy Tom Short
"Construction blasting covers a very extensive variety of explosive applications. I will discussseveral of these with you and then show slides from my collection, starting in 1956, which will betteril
Jan 1, 1991
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JK Simblast - Blast Simulation and ManagementBy Mike Higgins
"Data management is emerging as a major concern for miners. Engineers today are faced with anextensive array of data from varying sources, and are required to consolidate and analyse thisinformation t
Jan 1, 1998
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Human Response to Ground Vibration and Air-Overpressure Due to Blasting in Opencast Non-Coal Mines in India: A Case StudyBy M. Ramulu, A. K. Chakraborty, P. B. Sahu, C. Bandopadhyay, P. B. Choudhury
Human response to blast induced vibration and air overpressure is an unsolved problem that accompanies excavation process in mining. Pre-assessment and understanding of annoyance due to production bla
Jan 1, 2004
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The Application of Mid-Column Air Decks in Full Scale Production BlastsBy Barend Botha, Trevor Davids
The presence of an extensive soft siltstone layer in the middle of the inter-burden sequence of rocks at Syferfontein Colliery in the Republic of South Africa prompted tests to determine the effect of
Jan 1, 2000
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BLASTCAD Three Dimensional Underground Blast Design SoftwareBy David Sprott, Patrick Andrieux
In 1990 the Noranda Technology Centre commenced a project to develop an interactive three-dimensional blast design system using a commercial computer-aided drafting and design package (CADD). The obje
Jan 1, 1991
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The Development of Low Shock Energy Ammonium Nitrate Based Explosives and their ApplicationsBy Jaki Wilson, Les Armstrong, Neville T. Moxon
Low shock energy ANFO (ANFO) mixtures have been developed for use in fragmenting weak overburden materials and reducing damage.outside the blast zone in dry conditions. These mixtures can be readily p
Jan 1, 1990
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Velocity Capture Methods and ComparisonsBy Kevin Phelps, Jason Baird
When dealing with high velocity projectiles, the ability for researchers to accurately and precisely measure the velocity of the projectile is of great value. This report will analyze three different
Jan 1, 2014
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Why We Keep Blast ReportsBy Paul Kunze
For some of us, the most disagreeable part of being the blaster- in - charge is doing the required paperwork. Cost coding on time cards, drilling reports, magazine inventory logs, and blast records al
Jan 1, 2004
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The Exex 1000 Computer Aided Blasting (CAB) SystemBy Ronald L. Cocklin, Vivian Patz
Blasting techniques are becoming increasingly sophisticated as the need for improving mining efficiency grows. One of the areas of blasting that has never been fully exploited, due to a lack of a cont
Jan 1, 1995
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Relationship between peak particle acceleration, velocity and displacement of blast vibrationBy Ruilin Yang
The following simple equations are frequently used within the blast vibration community;PPA f PPV v = 2p · , PPV f PPD d = 2p · ,a f PPV PPA 2p = , and v f PPD PPV 2p = where, PPA is the peak particle
Jan 1, 2012
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*Kuz-Ram and Digital Image Processing System Combination to Determine Specific Blasting ParametersBy A. Karadogan, G. Tuncer, A. Kahriman
Determination of optimal blast parameters have been the priority act for blasters on the field due to financial and technical properties of the operation. Therefore many researchs were done to establi
Jan 1, 2005
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Final Rock Slope Blasting Techniques: Considerations in Design and ExecutionBy Michael F. Barber
"Highway slopes are intended to remain stable over a long period of time. Unexpected slope failures can be costly in terms of human life and property damage or loss. Cleanup of failures can prove to b
Jan 1, 1999
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Modelling Non-Ideal Explosives with Detonation Shock Dynamics (DSD) TheoryBy Lars Arne Granlund
Due to the coarse structure of mining explosives, one has to model a finite reaction zone,contrary to C-J calculations, describing their detonations, i.e they become dependent of diameter and confinem
Jan 1, 1995
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Throw Blasting with Greater than 50 Meters of OverburdenBy John Haviland, Richard E. Danell
"BHP Australia Coat Pty Ltd (BHPAC) operates seven large open pit coal mines in the Bowen Basin ofCentral Queensland, Australia. These mines have operated for periods ranging from 16 to 37 years. All
Jan 1, 1995
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Journal: Safety Talk / Out With The Old and In With the New / It’s Time for a Little Spring-CleaningBy Paul Downing
When was the last time the documents and paperwork were cleaned out of the glove boxes, door pockets, under the seats and above the visors in your company vehicles? Insurance cards that expired three
Jan 1, 2008
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Behavior of Nitrogen Oxides in the Product Gases from Explosive DetonationsBy James Rowland, Marcia Harris, Richard Mainiero, Michael Sapko
All explosive materials produce a cloud of reaction products, the most toxic of which is nitrogen dioxide (NO2). In the study reported here, 4.5-kg (10-lb) charges of blasting agent confined in either
Jan 1, 2006
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Possibilities with Accurate Delay Times: Results of Some Field Tests Using Electronic DeotnatorsBy Johan Svard
"Two years of field testing have shown that blasting results are improved both in surface and underground applications when Nitro Nobel electronic detonators are used. The delay times canbe chosen wit
Jan 1, 1992