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Advanced Analysis of Airblast and Vibration Signals for Optimizing Blast DesignBy Frank Sames
Blast vibration and airblast overpressure signals are generally rated and compared only by their maximum amplitude and the principal frequency associated with the peak pulse. The scaled distance conce
Jan 1, 1997
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The Effect of Water Table on Peak Particle Velocities from Blasting OperationsBy Michael Beattie
A large open-cast limestone mine had its blasting operations severely restricted by the imposition of limiting PPV levels to protect a water pipe-line passing through the mine property. Attempts were
Jan 1, 1992
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Vertical Crater Retreat Mining. At the Luossavaara Research MineBy Bengt Niklasson
"A test stope at the Luossavaara Research Mine in Kiruna, Sweden,was divided into four different modules in which various hole patterns and explosives were tested in order to evaluate:1. The optimum c
Jan 1, 1985
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Computer Aided Blast Design for TunnelsBy J L. Jethwa, A G. Gaithankar
The paper deals with a software method developed to design the optimum blast parameters for tunnels and mine roadways for a given set of geo-mining condition without any major discontinuity. The appli
Jan 1, 1993
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Burden Velocity AnalysisBy Patricia Mendoza Watson, Lundquist Robert G
The velocity with which the burden moves after blasting is of concern for safety and economic reasons. Models developed for motion velocity by various researchers were reviewed and likely model parame
Jan 1, 1990
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A Decade of Blasting at Martin Marietta CementBy J T. Keim
Members and guests of the Society of Explosive Engineers, it's indeed a pleasure for a longtime practical user such as myself to have the ears of so many explosive experts for a few minutes just to ex
Jan 1, 1978
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Considerations for Drill and Blast Excavation of a Geologic Repository for the Disposal of High-Level Radioactive Nuclear Waste at Yucca MountainBy Norman Kramer, Roger Keller
The authors would like to thank Austin Powder Company for their technical support and input, specifically Stephen Harris, Jason Ryan, and John Capers of Austin Powder, without whose support this paper
Jan 1, 2000
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Numerical Modeling of Oil Shale Fragmentation ExperimentsBy J S. Kuszmaul
The economic development of modified in situ oil shale retorting will benefit from the ability to design a blasting scheme that creates a rubble bed of uniform permeability. Preparing such a design de
Jan 1, 1985
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Explosive Engineering Problems from Fragmentation Tests in Oil Shale at the Anvil Points Mine, ColoradoBy Chapman Young, William L. Fourney, Richard D. Dick
During 1981 and 1982, an extensive oil shale fragmentation research program was conducted at the Anvil Points Mine near Rifle, Colorado. The primary goals were to investigate factors involved for adeq
Jan 1, 1985
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Single Round Blasting of 10 Food Diameter x 65 Foot Depth Emplacement Shaft Collars at the Mercury, Nevada Test SiteBy Tom Short, Bill Beam
Some of the weapons testing shafts at Mercury, Nevada require depths of 1000ft and diameters of 10 feet. The top 40 feet to 65 feet is drilled, blasted and excavated by Large caisson type augers in or
Jan 1, 1991
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Benefits of Bulk Explosive Use in Underwater Drilling and Blasting OperationsBy B R. Spencer
Using bulk repumpable water gel explosives in underwater shooting results in even more benefits to the user than a "dryland" customer. It is nearly impossible to reshoot underwater, so a bad shot caus
Jan 1, 1990
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Field Investigations into Blast Design Parameters of Highly Jointed Rockmass of Overburden: A Case Study of Large Opencast Coalmine (India)By V R. Sastry, D P. Singh, N R. Thote
Rock parameters which are uncontrollable impose restrictions on the procurement of desirable fragmentation. Blast design parameters which are controllable prove to be important tool in blasting operat
Jan 1, 1995
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Geomechanical differentiation of cratering mechanisms with two degrees of freedom and burden dependency investigated through single hole blast tests.By J. D. Aubertin
Rock blasting is a complex engineering process that requires in-depth knowledge of operations and geomechanical conditions. Acknowledged design precepts are based on cratering behavior associated with
Jan 1, 2024
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Parameters Affecting the Thermal Behaviour of Emulsion ExplosivesBy Robert C. Fouchard, Gordon Chalmers, David E. G. Jones, Ivana Alilovic, Phillip D. Lightfoot
There have been numerous international instances over the last several years in which pumping emulsion explosives has resulted in accidents, apparently as a result of increased thermal sensitivity und
Jan 1, 2000
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Low Strength Water Gel ExplosiveBy Michael M. Jackson
"The mining industry has for some time compared explosive energy requirements to theresults obtained using ANFO. Drill patterns, powder factors, and explosive bulk strengthshave all been developed bas
Jan 1, 1993
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Deep Hole Blasting with SMS - An Excess for Better ProductivityBy M S. Sandhu
Singrauli area of Madhya Pradesh in India has been developed as the power capital expected to produce around 11000 MW in near future requiring 65 million tonnes of Coal per annum. Thermal power plants
Jan 1, 1998
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A Review of the Federal Surface Coal Mine Blasting RegulationsBy Richard A. Dick
On August 3, 1977 the 95th Congress passed Public Law 95-87, the Surface Mining Control and Reclamation Act of 1977. This Act created the Office of Surface Mining Reclamation and Enforcement (OSM), wh
Jan 1, 1979
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What SEE Has Done For Me: The Value of the Scholarship ProgramBy Jim Daley
SEE is a dynamic organization composed of people from all facets of the explosives industry who are truly interested in the advancement of that industry. I had been a miner at the Homestake Gold Mine
Jan 1, 1995
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Enhance Blast Performance by Using PPAN Blended With Emulsion ExplosivesBy Sanjay Sengar, Nabiullah Pingua, Saurabh Sahay
In India, more than 80 percent of the total of 557 million metric ton coal production comes from open-cast mines involving large overburden removal with average 1:3.5 stripping ratio which is going to
Jan 1, 2014
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Emperical Characterization of Oil Shale Fragmentation ExperimentsBy P Wapner, C Lo Edwards, S CO Schmidt, J N. Johnson, R Oliver
Shale oil recovery rates that can be achieved in underground in situ retorts can be strongly influenced by the shale breakage and fragment-size distribution achieved during rubblization. Since the fra
Jan 1, 1979