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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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Vibration Criteria for Landmark StructuresBy John R. Schuring, Walter Konon
The 2.0 in./sec. peak particle velocity criterion traditionally used to protect structures from blast induced vibration damage is non-conservative for landmark structures. Various factors which must b
Jan 1, 1984
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Impact, Thermal, and Shock Sensitivity of Molten TNT and of Asphalt-Contaminated Molten TNTBy Richard J. Mainiero, James Q. Wheeler, Lewis H. Kopera, Yael Miron, Solin S. W Kwak
The research reported here was part of an effort to evaluate the safety of a process to recover TNT from MK-9 depth bombs by the autoclave meltout process. In this process the depth bombs are heated t
Jan 1, 1996
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Vibrating Wire Gages Watch Dynamical Structural Integrity During BlastingBy A. Feldman
Measuring dynamic effects on existing structures such as dams and bridges during earthquakes or blasting is frequently done using strong motion detectors. However, a more comprehensive dynamic structu
Jan 1, 2006
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Practical Applications and Blast Designs with Nonelectric Initiation SystemsBy Tom Treleaven
Several nonelectric blast initiation systems have been developed since the mid 1970's. Until that time, most blasts were initiated either electrically with electric blasting caps or nonelectrically wi
Jan 1, 1991
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Environmentally Motivated Tracking of Geologic Layer Movement During Bench Blasting Using Discrete Element MethodsBy Dale S. Preece
The blast-induced movement and final location of geologic layers that may cause environmental problems can be predicted using discrete element methods. This prediction capability can be used by mine o
Jan 1, 1994
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Coal Loss Due to Cast Blasting--Implication on Mine EconomicsBy Sarma S. Kanchibotla
In overburden cast blasting the explosive energy is used to move a significant percentage of overburden from the high wall to the spoil pile thus reducing the amount of material to be handled by machi
Jan 1, 1999
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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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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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SEE Education Foundation (Scholarship Awards - 2004)By N/A N/A
Aw a rd winners from the University of MissouriRolla. Back row from left: Seok Bin Lim, Chris B o l l i n g e r, Adam Kre s l e r, Scott Geer, Joseph Cohn, and James (Buck) Hawkins; Front ro w f rom l
Jan 1, 2004
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“Blasting Effects on Water Wells and Pipelines”By Rachel Bernau
Water wells, aquifers, and pipelines rarely incur damage from nearby blast vibrations. Extensive ground vibrations may cause a drop in the water table thereby changing an aquifer’s structure or drying
Jan 1, 2001
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Use of High Density Ammonium Nitrate in BlastingBy Lex L. Udy
Properties of an explosive which itiuence its performance on rock breakage are analyzed in relation to the rock: hardness and a discussion on the interaction of an explosive with the rock during the b
Jan 1, 1995
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Efficient and Safe Pre-Split Blasting Through Mechanized Explosive Loading SystemBy Jorge Cárdenas, Gustavo Huerta, Regina Rocha Oriundo, Miguel Angel Humpire, Johan Salas Flores
Currently a critical activity for slopes stability and safety in mining is pre-split blasting to reduce damage from trim blast. Most common explosive used are based on packaged explosives, with 1 ½ in
Feb 6, 2023
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Rock Removal Utilizing Ice Bridges in the Mackenzie River Northwest Territories, for Pipeline Trenches to Man-Made Islands a Deepening Shipping ChannelsBy William A. Travnik
For more than 60 years, ESSO RESOURCES CANADA LIMITED has been producing and refining oil at a small refinery in Norman Wells, Northwest Territories, and supplying diesel fuel and other oil products
Jan 1, 1986
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P-Wave and S-Wave Velocity Measurement for Stress-Strain AnalysisBy Karl E. Burger
Recently an experiment was completed at the Golden Sunlight Mine, a property owned by Placer Dome Inc. of Vancouver, British Columbia, to measure the Body Waves entering their highwall created by blas
Jan 1, 1989
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Improve Milling Through Better Powder DistributionBy Jack Eloranta
Optimization of blasting requires the comprehension of processes including drilling through milling. The author has previously considered the role of powder factor in relationship to downstream proces
Jan 1, 2001
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Relating Horsepower to Drilling Productivity (83232d04-da2e-4755-9f53-c779d17429d0)By Brian Wingfield, Greg Williams, Richard W. Givens
Application of required energies into the rig design can have a dramatic impact upon productivity. Computer modeling of these production variables has led to changes in design with values closely appr
Jan 1, 1995
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Journal: Big Sky and Beyond Explosives, Avalanches and RegulationsBy Mike Boissonneault
It was three years ago when the “storm of the century” had taken a firm grip over the Pacific West Coast and inland areas. At the Big Sky ski resort in Montana on Christmas morning two ski patrollers
Jan 1, 2001
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Journal: 100 Years / Firing Blasts by ElectricityBy Robert Hopler
The use of electrical fuzes is rapidly superseding the old cap and fuse method of firing blasts. It is therefore desirable that the details of this kind of blasting should be more generally understood
Jan 1, 2006
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Response of Pressurized Pipelines to Production - Size Mine Blasting (bb1d450c-404f-4180-8ab7-cb2b76c64cd1)By Mark S. Stagg, Siskind David E
The mining industry occasionally blasts near pressurized transmission pipelines and has requested guidance on safe vibration levels and setback distances. The Bureau of Mines and the Indiana Departmen
Jan 1, 1993