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Target Loading from a Submerged ExplosionBy Ulrich Leiste, Andrew Wardlaw, William Fourney
This paper describes the loading on a plate suspended directly over an explosive charge submerged in water. This problem is of interest because it yields results similar to those obtained in the deton
Jan 1, 2008
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Designing Blasts by Simulation Rather than Solely by Trial/ErrorBy Roger Favreau, Patrice Favreau
Without blasting there can be no roads, no hospitals, no factories, not even foundations for homes. Yet in 1960 the only way to design a blast was by trial/error. By comparison, bridges were already d
Jan 1, 2013
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Journal: Effects of Temperature and Humidity on Airblast Sound Pressure LevelsBy Randal Martin
Recently, questions regarding the influence of atmospheric temperature and humidity levels on airblast levels have arisen at a number of blast sites. Humidity is alleged to have contributed to high le
Jan 1, 2001
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Structural Control Over Fragmentation: Characterization and Case StudiesBy Chantale Doucet, Mario Paventi, Malcolm Scoble, Yves Lizotte
Laboratory studies in homogeneous material indicate that the area of new surfaces created by blasting is proportional to the energy imparted to the material. Field studies, however, show that fragment
Jan 1, 1994
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Evaluation of Schedule IV-Type ContainersBy D Wilson, E Nagy, R A. Augsten, R R. Vandebeek, R L. Guilbeault
The Canadian Explosives Research Laboratory (CERL), is evaluating the status of the Schedule IV explosives container as it presently pertains to the industry. The Schedule IV container serves the same
Jan 1, 1990
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So You Think You Are Monitoring Peak Particle VelocityBy R A. Farnfield
Measurement of the environmental impact of ground vibration from blasting operations is based almost exclusively on the peak vibration level generated. This measurement is known as the Peak Particle V
Jan 1, 1996
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Controlling Overbreak Through Vibration MonitoringBy Kaushik Dey
Bord and pillar is the most predominant method of wining of coal in Indian underground coal mines. Development heading in coal mines often encounters roof stability problem and results in roof overbre
Jan 1, 2008
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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
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Carbon Monoxide Poisoning Associated to Blasting Operations Close to HouseBy Pierre Auger, Benoit Levesque, Richard Martel, Guy Sanfacon, Louis-Charles Boutin, Marc-Andre Lavigne, Patrick Brousseau, Luc Trepanier, Louise Galarneau
Explosives used for blasting operations in civil engineering works, like construction of piping systems under roads, of pools, of houses and buildings can generate large volumes of carbon monoxide (CO
Jan 1, 2002
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Impulse Delivered to a Plate from Explosive DetonationBy D. Goodings, W. L. Fourney, Bonenberger, R., Uli Leiste
The problem of the maximum depth at which a mine buried in the surf zone or beach zone is a threat to landing vehicles is being studied by Naval Surface Warfare Center (NSWC), Indian Head Division, Na
Jan 1, 2004
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Unique Renewable Alternative Fuel for ANFO ApplicationsBy Mark Mammele, John Bowles
With the continuing rise in the cost of petroleum products and the focus on the increasing use of renewable resources, a readily available, economical replacement for fuel oil in ANFO is the logical n
Jan 1, 2008
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Guidelines for Mining and Quarry Blasting Urban Areas Brazilian Regulation NBR 9653 Under Current ReviewedBy Denise de La Corte Bacci
The Brazilian Regulation NBR 9653 is a guide intended to evaluate mine and quarry blasting effects in urban areas. The first version, written in 1986 by the Committee of the Brazilian Associate of Tec
Jan 1, 2005
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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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Oversize Quantification Using Drone-Based Fragmentation AnalysisBy Nolan Eckroade
The demand for blast optimization within the quarrying industry calls for more effective, faster and safer methods of quantification of blast performance. Drones provide the ability to safely and quic
Jan 1, 2018
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Port of Miami Project – Protecting Marine Species During Underwater BlastingBy Terri Jordan, Kenneth Hollingshead, Mary Jo Barkaszi
The Port of Miami, Miami-Dade County, Florida (Port) is the largest container port in the State of Florida. However, it is located in the center of a diverse ecosystem. Biscayne Bay surrounds the Port
Jan 1, 2007
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A Fractal and Damage Model for Rock-Breaking by BlastingBy Wang Zhong Qian, Liu Hui
The paper proposed a fractal and damage model for rock-breaking by blasting, which assumed that the process of rock-breaking results from intrincent fractal development and the accumulation of damage.
Jan 1, 1997
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A Method for Site-Specific Prediction and Control of Ground Vibration from BlastingBy Andrew P. Ritter, James W. Reil, Douglas A. Anderson, Stephen R. Winzer
We have developed a method for predicting and controlling ground vibration from blasting using a rigorous scientific approach. The method is based upon the superposition of seismic waveforms generated
Jan 1, 1985
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Risk Assessment Software Applied To Large Bomb Detonations Near StructuresBy Joshua Hoffman, Rob Farnfield, Catherine Johnson, Braden Lusk, Morgan Lane
IMESAFR (IME Safety Analysis for Risk) is a quantitative risk assessment software tool developed by the Institute of Makers of Explosives (IME) and A-P-T Research, Inc. It is used for managing risk in
Jan 1, 2014
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Large Scale Measurement of Velocity of DetonationBy Alastair Torrance, Braden T. Lusk, MinGi Seo, Gary Cavanough
Velocity of Detonation (VOD) is the most commonly used method to determine explosive performance as VOD is a function of the confinement (ground conditions) density and composition of the explosive. T
Jan 1, 2019
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Hydraulic Boulder Fragmentation using Small Explosive Charges (e17fa3e4-a011-4982-aee2-a189f0d0465a)By Bryan J. Lane, Paul N. Worsey
The recommended maximum explosive weight for boulder blasting using internal charges is 0.1 O-kg/m” (3.5 oz./yd) (Olofsson, 1988). Normally this charge results in excessive scattering and flyrock, cre
Jan 1, 1999