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Drill & Blast Optimization in India an Economic & Environmental ReviewBy C. Navalkar
Systematic drilling & blasting techniques are currently being viewed in the mining & construction industry as a correct 8z scientific approach for optimization process in rock excavation, as drill & b
Jan 1, 2001
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Computer and Centrifuge Modeling of Decoupled Explosions in Civilian TunnelsBy Neil T. Davie, Thomas K. Blanchat, Thomas C. Togami, Joe R. Weatherby, Dale S. Preece, Robert A. Benham, James J. Calderone
"Geotechnical structures ,such as underground bunkers, tunnels, and building foundations aresubjected to stress fields produced by..the gravity load on the structure and/or any overlyingstrata. These
Jan 1, 1998
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Staggered Parallel Cut in Small Headings the Most Cost-Reducing Alternative to All Other Cuts in Mechanized DriftingBy Max Pena Woolcott, Winfried Rosenstock, Maria Chappuis, Walther Hennig
"In a Peruvian-German Technical Cooperation project for the Mining Sector the ""Milpo-cut"" along with the electric initiation system has been successfully implemented in a Peruvian metal-ore mine.Spe
Jan 1, 1994
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Sources of Nitrate in Groundwater Near Roadway Rock Blasting SitesBy David M. Langlais, Krystle Pelham
"Explosives used in blasting operations, natural and anthropogenic sources such as septic systems,fertilizers, and decomposing vegetation can potentially contaminate groundwater with nitrate in thevic
Jan 1, 2016
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Synergy of Seismic, Acoustic and Video Signals in Blast AnalysisBy Brian W. Stump, David P. Anderson, John Wiegand
Mining explosions are designed for a variety of purposes including the fragmentation and movement of materials. The blast design is dependent on the particular application intended and the material pr
Jan 1, 1997
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Blasting in AntarcticaBy Charlie Brumbaugh
Antarctica with its diverse conditions such as severe cold, high winds, rock and ice structure and limited explosives available posed many obstacles. This paper will give an overall view of the method
Jan 1, 2000
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Simulations of Platform Loading from Explosions in Saturated SandBy William G. Szymczak
A set of experiments were conducted at the Aberdeen Proving Grounds [1] in which explosive charges were buried in saturated sand beneath a suspended rigid platform. The goal of these experiments was t
Jan 1, 2005
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Experiences with Electronic Delay Detonators in Major Production BlastsBy Claude Cunningham
Ths oonoept of precise. eooursts timing with Elsotronic Delay Detonators (EDD’s) was first ssriously sddresssd in ths mid 80’s end much wss made of the cheapness end profusion of digital wstohes in te
Jan 1, 1994
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Public Relations Program on a Deep Tunnel Project in AtlantaBy Gregory B. Poole
As part of a $3.5 billion program to improve the antiquated waste water system in the city of Atlanta, the Nancy Creek Tunnel is being constructed across the northwest portion of the city. This tunnel
Jan 1, 2005
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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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Mine Blasting Safety in the USA---Progress and Technology AdvancementsBy Harry: Lobb Verakis
Mining operations have made tremendous strides in improving the safety of blasting as shown by the significant and continual decrease in fatalities and serious injuries. Advances in blasting technolog
Jan 1, 2010
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Reduction in Total Blasting Cost of Mine Using Electronic DetonatorsBy Narendra Gupta, Gaurav Srivastava, Abhinav Sharma
From the days when plain detonators and safety fuse were used for initiation of commercial explosives, the commercial blasting and mining industries have made rapid strides. With the advent of electro
Jan 1, 2015
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Study of Blasting Produced Air Overpressure in Urban AreaBy Zou Dingxiang
Rock blasting in the project of “Site Formation and Associated Infrastructure Works at Choi Wan Road and Jordan Valley” is the largest urban blasting project in the history of Hong Kong and also is ra
Jan 1, 2007
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Crater Blasting Techniques and Designs in Compacted SoilsBy Patrick D. McLaughlin
Crater blasting techniques have had relatively little application in the surface mining industry. This is not surprising, considering the geometry required to efficiently use cratering. The more widel
Jan 1, 1992
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Quarry Blasting Management in Urban and Suburban EnvironmentBy Alain Blanchier, Gilles Gomez
Neighborhood pressure on quarries has become urgent to deal with quarry managers and operators must apply the most recent technologies and communicate it for long shelf life time exploitation, the qua
Jan 1, 2009
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Explosive Energy In Blast Design OptimizationBy Deepak Vidyarthi
This paper deals with the significance of Explosive Energy in the optimization of blast design parameters, and the benefits emerging out of it. It is based on the original work done by the author in d
Jan 1, 2006
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Vibration Monitoring Using In-house Developed Devices – A Taylor’s ApproachBy Francisco Sena Leite, Pedro Brito, Auã Kiahla, Raquel Carvalhinha, Tomi Kouvonen, Vinicius Miranda
Shockwaves that generate vibration in the surrounding environment of a blast, are one of the most important factors to control drill & blasting works near delicate buildings as well as in sensitive st
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Professional Steps in the Blasting ProcessBy Mark William Withey
"Blasting safety in surface mining is a necessary industrial goal. Proper techniques and disciplinesexercised during the blasting process enhance the probability of achieving that goal.The blasting pr
Jan 1, 1995
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Soil Cap Density Distributions Resulting from Buried Explosions in Saturdated SandBy L C. Taylor, H U. Lesiste
This paper describes a method for estimating the density distribution in the soil cap as a function of distance from its top at the time of impact with the target. It provides an estimate of the densi
Jan 1, 2011
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Accublast Detonator - A New Era of Precision in All-Electric DetonatorsBy W B. Gregg
The rock blasting and mining industries use a system of detonators and explosives for mining operations. Many detonators use small metal bridgewires, which are heated by passing a current through the
Jan 1, 1994