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Mining and Fragmentation: Proposal for a More Efficient Mine ManagementBy Ivan Carrasco, Benjamin Cebrian
Mining companies have traditionally organized their structure around a scheme easy to manage: Mining Department and Mill Department. In a challenging landscape for mining, with decreasing grades, incr
Jan 1, 2014
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Chemical and Physical Factors that Influence No. Production During Blasting - Exploratory StudyBy James Rowland, Isaac Zlochower, Richard Mainiero, Michael Sapko
The National Institute for Occupational Safety and Health (NIOSH) carried out exploratory laboratoryscale studies to identify factors that may contribute to nitrogen oxides (NOx) production associated
Jan 1, 2002
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Blast Vibration and Seismograph Section - A History of the Development of Instruments for Measuring Vibrations of the Earth - Part 1By Robert Hopler
Earthquakes, ground vibrations, seisms, or whatever you want to call the shaking of the earth, have been a fact of life throughout time. In spite of this, most people (except those unfortunate enough
Jan 1, 2006
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Planning for Optimum Dragline PerformanceBy Mark A. Williams, James D. Humphrey
Without question, draglines are one if not the most effective tools available to the surface mining industry for overburden handling. With few moving parts and a two- or threeman crew, this machine si
Jan 1, 1990
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Emulstion Explosives TechnologyBy David G. Borg
Emulsions explosives, like slurries or water gels, are water based explosives. Emulsions were first introduced as a packaged blasting agent in the late sixties. Since then, many new variations have be
Jan 1, 1994
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The Influence of Rock Mass Characteristics OnoverbreakcontrolBy S. Paul Singh
Rock is a heterogeneous medium, a fact often ignored during blast design. In reality, the rock mass characteristics have a controlling influence on the outcome of a blast. If the optimum blasting resu
Jan 1, 2000
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JK Simblast - Blast Simulation and ManagementBy Mike Higgins
"Data management is emerging as a major concern for miners. Engineers today are faced with anextensive array of data from varying sources, and are required to consolidate and analyse thisinformation t
Jan 1, 1998
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Development of charging machine for cartridged explosivesBy Minoru Kawamura, Shinya Tanaka
In Japan, a cartridged emulsion explosive is generally used for tunneling. The workers are compelled to approach the face on charging the explosives into the drill hole with the tamping rod. Therefore
Jan 1, 2008
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Description of Damage Constitutive Model as Documented in Pronto3D Manual 3/89By Billy J. Thorne
The damage model in PRONTO simulates the dynamic fracture behavior of brittle rock. It is based on work started by Kipp and Grady, [lg] continued by Taylor, Chcn and Kuszmaul [I91 [20] and recently.mo
Jan 1, 1989
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High.Speed 2D Analysis Program Version 1.30By Bruce Vandenberg, R F. Chiappetta
"The High Speed 2D Analysis program allows the user to bring in data from several different sources. Of course, keyboard entry is included as a source. Other data is inputted through the serial port (
Jan 1, 1989
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New Drill Bit Technology - The Rock Reamer Drill BitBy Roger "Dean" Skaggs
Mechanical rock drilling is about 150 years old, and the fundamental principles of augering, penetration and dragging, pressure and rotation, and percussion have not appreciably changed. Surface minin
Jan 1, 1997
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Numerical Modeling of the Circular-Cut using Particle Flow CodeBy Young-Dong Cho, Yonghun Jong, Dong-See Shim, Seokwon Jeon, Chung-In Lee
The most important operation in the tunnel blasting procedure is to create an opening in the face in order to develop more free surface in the rock mass. This operation is highly dependent on the cut
Jan 1, 2005
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Monitoring and Prediction of Blast Vibrations : A Case StudyBy D Vidyarthi
Blasting is the most important activity in the mining industry, the world over. It is a well known fact that only part of the explosive energy gets utilized in causing the actual rock fragmentation. T
Jan 1, 2007
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Fragmentation Interaction with Underground Mining Systems and ProductivityBy B Mohanty, Y C. Lizotte
Optimization of blast fragmentation in underground hardrock mining requires analysis of its effects on loading and haulage equipment, together with the downstream materials handling system, with the o
Jan 1, 1991
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Swedish Standards for Ground Vibrations and AirblastBy Roger Holmberg, Donald Jonson
The Swedish Standard SS 460 48 66, “Vibration and shock - guidance levels for blasting induced vibration limits”, is based on more than 50 years of experience from blasting close to structures and tun
Jan 1, 2005
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New and Improved ISO-Seismic 3D Analysis System for Mapping Ground Vibration Patters Around a BlastBy D T. Froedge
At the 1990 Symposium of the Society of Explosives Engineering, D.T. Froedge, President of GeoSonics Inc., presented a paper entitled "Differential Topographic Vibration Isomapping", which detailed th
Jan 1, 1992
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Response of a High-Pressure Natural Gas Pipeline to Coal Mine BlastsBy Ed Clah, Catherine Aimone-Martin
The vibration response of a 30 in. diameter high-pressure (845 psi) natural gas pipeline to 11 coal mine blasts was measured. The X-52 steel pipeline was buried 7 ft. below the ground surface. Ground
Jan 1, 2003
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Human Response to Ground Vibration and Air-Overpressure Due to Blasting in Opencast Non-Coal Mines in India: A Case StudyBy M. Ramulu, A. K. Chakraborty, P. B. Sahu, C. Bandopadhyay, P. B. Choudhury
Human response to blast induced vibration and air overpressure is an unsolved problem that accompanies excavation process in mining. Pre-assessment and understanding of annoyance due to production bla
Jan 1, 2004
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Well Casing - Another Problem Solved Through the Uses of ExplosivesBy Jerry Wallace
The goal: At an industrial site, sever a well pipe containing an interior obstruction in a timely, cost effective manner by using a shape-charge to cut through the casing more than 50 meters below gro
Jan 1, 2000
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The Use of High Explosives to Conduct a Fisheries Survey at a Nemdway Weir Field on the Middle Mississippi RiverBy Michael Peterson, Robert Davinroy, Robert Rapp, Gregory Hempen, David Herzog, Thomas Keevin
Fish sampling in a deep-water, high velocity, environment is extremely difficult. Conventional techniques such as electro-fishing and netting have been limited to depths generally less than 7 meters (
Jan 1, 2002