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Computer Cast Blast ModellingBy Mike McGill, Stephen Chung, Dale S. Preece
Cast blasting can be designed to utilize explosive energy effectively and economically for coal mining operations to remove overburden material. The more overburden removed by explosives, the less bla
Jan 1, 1994
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Investigation of ANFO’s Behavior under Various Conditions - Phase 1By E. Contestabile, B. von Rosen
On August 5th, 1998, a tractor-trailer carrying approximately 18,000 kg of blasting explosives, struck a rock face on the side of the road near the town of Walden, Ontario. Eye-witness accounts of the
Jan 1, 2001
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Innovative Landmine NeutralizationBy Everett Clausen, Richard Walker
CIL/EVANinc and the Canadian Explosives Research Laboratory of the Government of Canada have evolved a concept developed by Research Energy of Ohio, into a landmine neutralization system that is the m
Jan 1, 1999
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Recent Developments in the Application of Hercudet to Surface Mining, Quarrying, and Coal StrippingBy Robert B. Hopler
The Hercudet™ non-electric delay blasting cap system has exhibited outstanding performance and economic results in surface work. The versatility inherent in the system, which allows the combining of t
Jan 1, 1978
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Arlanda Link - A New Railway Beneath Arlanda Airport in Stockholm, Sweden, - A Technical Blasting ChallengeBy Donald Jonson
The Arlanda Link project is for the time being the most interesting project in Sweden, concerning rock and blasting technology. The total amount of rock excavated beneath Arlanda airport comprises 800
Jan 1, 1997
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Computer Aided Blasting System for Use with Electronic DetonatorsBy Dave Proudfoot, Mike van Wyk
"There has akvays been plenty of discussion around the ‘accuracy of pyrotechnic detonators withmost recognised manufacturers claiming a variability of arourid 1% or less for their ‘superaccurate’ pyro
Jan 1, 1998
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Surface Vibration Measurements from Deep Hole BlastsBy Jesus Pascual, Jose Sanchidrian, Pablo Segarra
The surface vibration field in the area above an underground mine prior to its development has been investigated, in order to assess the vibration levels expected in existing buildings and in the plan
Jan 1, 2002
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Reducing Eyebrow Break Caused by Rock Blasting in Malmberget Mine (86e4ad65-d689-43b3-b42e-a83837151808)By Z X. Zhang
In sublevel caving mines, eyebrow break usually gives rise to lower ore recovery and worse safety in the field. Eyebrow break is caused mainly by two tensile stress waves: one from the front surface o
Jan 1, 2011
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Estimating Explosive Gas Pressure DistributionBy John N. Jr Edl
Geokinetics, Inc. has pioneered an in-situ oil shale retorting production process that provides the requisite void space for producing a permeable rubble bed, within the retort zone, by using the expl
Jan 1, 1983
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The Science of BlastingBy Andrew Ritter, Victor I. Montenyohl, Stephen R. Winzer
Thirty-seven open pit production blasting operations have been monitored using high-speed cameras running between 500 and 7000 frames per second. Analysis of the resulting films reveals irregularities
Jan 1, 1979
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Performance Evaluation and Effects of Standoff on 10,500 grain per foot Linear Shaped ChargeBy Kevin Phelps, Jason Baird, Philip Mulligan, Dominique Nolan
The basic metric for linear shaped charge performance is the amount of cutting distance that the charge can effectively yield given a specific standoff and target. Due to its size and restricted produ
Jan 1, 2013
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Stealing Thor's Thunder Lightening: Myth vs. RealityBy C W. "Mickey" Bradley
Thunder strikes terror in the hearts of man and has since the advent of time. We all fear the unknown; even the Greeks created a god, THOR, to be responsible for the thunder and rain. Thunder, by itse
Jan 1, 1992
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Ammonium Nitrate Blasting Agents from Manufacture to Field UseBy Fred C. Drury
The introduction and growth of modern chemical explosives based upon prilled ammonium nitrate has been the most significant development in the explosives industry during the 20th century. These modern
Jan 1, 1980
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Strategy, Innovation and Change - Challenging the Future at the Gregg River MineBy Rick W. Bellenie, Ronald L. Woolf
The Gregg River mine is located 40 kilometres (25 miles) south of Hinton, Alberta, approximately 330 kilometres (205 miles) west of Edmonton and lies against the Front Range of the Rocky Mountains.
Jan 1, 1994
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Spherical Charges Develop Vertical Crater Retreat Method in Stope and Pillar MiningThe breakage mechnism of a spherical charge greatly differs from that of the cylindrical charge used in underground mining. The advantages of the spherical charge could not be utilized until INCO Meta
Jan 1, 1978
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South African Blasting Practice in Shaft SinkingBy Rodney C. Espley-Jones, John C. B Wilson
South Africa is well known for its shaft sinking exploits, and many of the world's biggest and deepest shafts are to be found there. Blasting practice differs in a number of respects from that followe
Jan 1, 1979
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Momentum Transfer from Flowing Explosive Gases to Spherical Particles Durin g Computer Simulation of Blasting-Induced Rock MotionBy Dale S. Preece
A discrete element computer program, DMC (Distinct Motion Code), has been used for several years to simulate blasting-induced rock motion. Recent enhancements of DMC's capabilities have included addit
Jan 1, 1993
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Everglades Nutrient Removal ProjectBy Philip M. E Thomas
For over sixty years man has struggled to defeat the natural swamp lands known as the Florida Everglades as demand for land to support the burgeoning population growth in the state continued almost un
Jan 1, 1994
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PhotoSeis: an Advancced Method for Vibration Analysis and ControlBy Daniel B. Conn, John L. Floyd
PhotoSeis™ is a blast analysis method that combines the advanced technologies of high speed motion picture photography and digital seismology. When fracturing rock with the use of explosive energy, th
Jan 1, 1990
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Using Digital Electronic Detonator of Blasting LS and LDT BuildingsBy Zheng Deming, Li Hongwei, Lei Zhan, Dai Chunyang
This paper introduces the application of a digital electronic detonator in the demolition blasting of largescale (LS) and long delay time (LDT) frame-shear structure buildings. The whole building to b
Jan 1, 2019