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Blast Desification Techniques (An Operator's Guide)By Patrick D. McLaughlin, C Fordham
"The project outlined in the accompanying paper was to densify beach sands on the pond side ofa tailings dyke to the strength required for future dyke construction, This was to be achievedthrough the
Jan 1, 1992
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Low Cost Method for monitoring Shock-Tube Detonator and Explosive Product performance in Blast holes.By W. Birch, G. D. Rangel-Sharp, L. Bermingham
For many years, the accepted method of Measuring the Velocity of Detonation (VOD) in blast holes has been to use an electric cable of a constant resistance per metre. Thus as the wire is consumed by t
Jan 1, 2011
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In-Situ Rock Strength Determination for Blasting PurposesBy Ashwani Jain, D K. Soni
Compressive strength of rocks is often required by mining engineers and quarrying authorities for blasting operations. Uniaxial compressive strength of rocks can be predicted with reasonable accuracy
Jan 1, 1994
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Research and Application on Channel-Type Non-Mechanical Stirring Emulsion Explosives ProductionBy Guo Ziqing, Tang Qiuming, Liu Yuanyuan
The channel-type non-mechanical stirring production process is a new developed technology for emulsion explosives in recent years. It removes traditional equipment such as mechanical-mixing emulsifica
Jan 21, 2025
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Reduction of Vibration in a Low Frequency Zone at Construtora Sultepa EV QuarryBy D. C. Valdemeri, Oppermann J. P. Z., R. G. Schaarschmidt, C. S. Mendonca
This case study was conducted in an aggregate company, located at Estância Velha town, RS, Brazil. The study was based on the results of vibration monitoring mainly in terms of PPV (peak particle velo
Jan 1, 2015
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Ammonia (NH3) in blasting fumes – origin and measurementBy Peter Moser, Michael Messner, Florian Bauer
The existence of ammonia in underground blasting fumes was frequently measured in various field tests (6, 7). Ammonia in fumes with a TLV (threshold limit value) of around 30 ppm (slightly different i
Jan 1, 2010
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Danger Tree Blasting In BCBy Dave Weymer
Falling timber in BC has always been a hazardous job. Huge, often rotting trees and steep, rugged terrain combine to create difficult and dangerous conditions. Death and injury rates are among the hig
Jan 1, 2013
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Flyrock Model Validation and ApplicationBy C. K. McKenzie
Presents outline of flyrock model and a field procedure to validate predictions of maximum projection distance. Field results are presented from 13 field tests with two different hole diameters.
Feb 1, 2020
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Principal Component Analysis Of Vibration And Air BlastBy John Cory, David Lily, Bill Hissem
The Lafarge granite quarry in Cumming, Georgia is using Principal Component Analysis (PCA) and Biplot charting to identify important variables and control air blast and vibration. Every blasting situa
Jan 1, 2010
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Feasibility of Applying Probabilistic Risk Assessment to TerrorismBy Natalie Zeleznik, Brian Hawkins, David Bradley, Rachel Gooding, Patrick Wilson
"The United States (U.S.) Department of Homeland Security (DHS) Directorate of Science and Technology (S&T), utilizes a probabilistic risk assessment (PRA) approach to explore the risks (anduncertaint
Jan 1, 2017
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Detonation Pressure Measurement Using the Manganin GaugeBy Richard H. Granhom
Detonation pressure, or Chapman-Jouguet pressure, is an intrinsic property of an explosive, and like detonation velocity, is an indicator of explosive performance. Pressure and velocity are also impor
Jan 1, 1991
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Close-In Blasting Effects on Structures and MaterialsBy Lewis L. Oriard
The purpose of this paper is to provide an overview of close-in blasting effects on various types of structures and building materials, as encountered in this writer's professional practice. Structure
Jan 1, 1991
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Evaluation of Blast Vibrations from Sekkoy Surface Coal Mine In TurkeyBy H. Bilgin, Sedat Esen
In this paper, the ground vibrations induced by blasting for stripping work at Sekkoy Open Cast Coal Mine belonging to TKI Yenikoy Lignite Mine (YLI) are investigated and the procedures for monitoring
Jan 1, 2001
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A New Tool for Managing Risk Associated with Commercial Explosives OperationsBy Lon Santis, David Leidel, John Tatom, Meredith Hardwick
This paper describes the development and methodology of the Institute of Makers of Explosives’ Safety Analysis for Risk (IMESAFR), a risk analysis software program for commercial explosives operations
Jan 1, 2007
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Overburden Blasting Vibrations: Analysis, Prediction, and ControlBy Otto E. Jr Crenwelge, Timothy A. Peterson
We have developed a site-specific method for analysis, prediction, and control of ground vibrations induced by overburden blasting operations in surface coal mines. Field tests conducted at R&F Coal C
Jan 1, 1986
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Coupling Numeric and Symbolic Modeling in Blast DesignBy Martin L. Smith, Robert L. Hautala
The objective of blast optimization can be approached either in a qualitative sense of designing a blast which will be "trouble free", or quantitatively in the sense of minimizing overall mining costs
Jan 1, 1991
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Vibration Criteria for Surface Mine Blasting: Ten Years after Bureau of Mines R1 8507By David E. Siskind
In the early 1980's, the Bureau of Mines published four reports of structural response and damage from surface mine blasting, vibration monitoring, and analysis methods. These findings replaced simple
Jan 1, 1991
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Improving Blast Preformance with High Density Toe LoadsBy John Floyd, Larry Wardrip
A series of tests were conducted to evaluate the performance of a high density, high velocity cartridged explosive. The tests included two production blasts in a limestone quarry and two production bl
Jan 1, 2002
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Explosives in the Oil and Gas Industries: From Looking for the Deposit to Sealing the WellBy Robert B. Hopler
Explosives have been important to the oil and gas industries since the very earliest days. The first wells of Pennsylvania and New York in the 1860’s were able to be brought back to productivity by th
Jan 1, 1998
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Bingham Canyon Mine-Blasting Through and Next to Active UndergroundBy Robert Cefalo
Drill and Blast Engineer Abstract In 2019, the Bingham Canyon Mine, owned by Rio Tinto Kennecott Utah Copper Company, mined through the active underground that dewaters the pit. The active underground