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Ore Waste and Dilution Studies of Surface Mineral Blasting with 3D Distinct Element Heave ModelsBy Stewart A. Silling, Dale S. Preece
The two key results of rock blasting are fragmentation and movement of geomaterials. Movement/flow of the blasted rock is often referred to as heave. Modeling the movement of full scale blasting is no
Jan 1, 2016
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Principles and Controls for Close-In Blasting StructuresBy Wilfred G. Comeao
Close-in blasting occurs every time the use o f explosives for excavation or demolition requires the surpassing of the commonly accepted cosmetic damage criteriain order to arrive at reasonable and pr
Jan 1, 1991
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Metafex®: Safe, Energetic Explosive ReplacementsBy David Davison
Metafex®* is an inert material that is more energetic than explosives when activated. Because Metafex is inert until activated (a moment before use), it can profoundly change the logistics of systems
Jan 1, 2006
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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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World-Wide Survey of Distress Blasting Practice in Deep Hard Rock MinesBy Marwan M. Mohammed, Hani S. Mitri, Wilfrid Comeaul, Baoyao Tang
In many parts of the world, rockbursts have become a major problem of mining at depth. As orebodies are being mined deeper, rockburst phenomena have become familiar to deep hard rock mines. Rockbursts
Jan 1, 1999
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Explosives Control Legislation in the New CongressBy Reynold N. Hoover
The bombing of the Murrah Federal Building in Oklahoma City, Oklahoma, on April 19, 1995, has once again renewed public debate surrounding the availability and use of explosives in the United States.
Jan 1, 1996
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The SMX Blast Controller – A new tool to determine the geometrical parameters of a blast based on 3D imagingBy Peter Moser, A. Gaich, E. Grasedieck Zechmann
In The SMX Blast Controller is a novel tool for precisely controlling the geometry of a blast based on the technology of 3D imaging. It enables to derive precise information about the geometry of the
Jan 1, 2006
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Application of Computer Blast Modeling to Oil Shale MiningBy P J. Hommert, D S. Preece
"Commercial development of the United States Oil Shale reserve will require substantial amounts of mining. In fact, even a modest 500,000 barrels per day industry requires a mining effort equivalent t
Jan 1, 1989
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Wireless Electronic BlastingBy Daniel Mallette, Richard Goodridge, C M. Lownds
Despite a world of mobile devices that has many of us taking the ability to communicate wirelessly for granted, an in-hole wireless initiation system was thought to be not viable. The known and common
Jan 1, 2016
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Qualitir Software Suite, Computer Aided Blast DesignBy M Thierry Bernart
The software QUALITIR is a software developed by CNSIDCI, framework on five research and experimentation years. This conceived tool by specialists for professionals is a decision aided design tool con
Jan 1, 1997
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Reduction of Airblast and Prevention of FlyrockBy Rufus Flinchum
Two of the most critical concerns a blaster faces today are airblast and flyrock. Airblast, sometimes called noise or overpressure, can cause damage to neighboring structures, especially windows. It a
Jan 1, 1992
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Cap Precision in Perimiter Control Blasting and the Potential Application of Electronic DetonatorBy Derek T. Novotny
Blasting cap precision is of major importance to advanced blast design. New technologies have introduced the use of microchips within detonator casings in the hope that the electronic control of the t
Jan 1, 1998
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Continuing Improvements in Longhole Stoping at the Bulyanhulu MineBy P. O'Connell, J. Lever, C. Clemence
The Bulyanhulu Mine, Tanzania is constantly trialing ideas for improvements in the drill and blast process. The project work has resulted in a large number of choices in explosive type and charging me
Jan 1, 2006
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A Method to Calculate the Dynamic Strain Tensor from Blast Vibration Records - Theory and Measurement Error AnalysisBy Ruilin Yang
"Blast vibrations are essentially a strain/stress wave propagating in rock or structures inthe vicinity of a blast. However, blast vibration has always been quantified in terms ofpeak particle velocit
Jan 1, 2012
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Stratablast in ActionBy C. Rutledge
The new mining method of multiple strata blasting, called StratablastTM, is described in a separate paper presented at this conference. The current paper presents three case studies where the techniqu
Jan 1, 2006
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Downstream Benefits of Optimized DrillingBy Kevin Landey, Eric Gerst
Expanding blast patterns to near the limit of an explosives’ ability to do the necessary amount of work is a common practice to reduce drilling and blasting costs. Choosing less expensive explosives s
Jan 1, 2018
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Small Diameter Explosives - Choosing for Underground Blasting ApplicationsBy S J. Brace
About 180 000 tons of explosives are used annually underground in South Africa. Most is loaded into holes less than 50mm in diameter. 75% is consumed in the gold and platinum mines where holes are bet
Jan 1, 1994
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Full-Field Deformation Measurements Under Explosive Loading Conditions Using Multi-Image Pattern AnalysisBy Xing Zhao, Michael A. Sutton, Vikrant Tiwari, Damien Bretall, Xiaomin Deng, William L. Fourney, Uli Leiste
The dynamic response of a thin aluminum plate subjected to both shallow and deeper buried blast loading was studied. Using a combination of high speed stereo-vision and three dimensional digital image
Jan 1, 2010
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A Computer Model for Explosively Induced Rock Fragmentation During Mining OperationsBy J W. Simmons, T H. Antoun
"Rock fragmentation is an important component of explosive mining and excavation techniques andis the culmination of a damage accumulation process dominated by crack propagation. During the past 20 ye
Jan 1, 1995
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SCB Technology for New Electronic and Fiber-Optic Based Detonators and Initiation SystemsBy W Barry 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, 1992