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Use of Explosives in Deep Rock Mining: In Situ Energy and Mineral Recovery
By D Larson, M Finger
Chemical explosives may become a key element in many of the in situ energy and mineral recovery methods under development. This paper discusses the potential role of explosives in deep rock mining for
Jan 1, 1976
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Explosive Energy Concept for Drill Productivity & Higher Overall Productivity at Reduced Excavation Costs
By Satish R. Kate
Explosive is a chemical energy, which on detonation is released instantaneously with extremely high speed and under high pressure. It is used to meet the basic requirement for breaking of rocks. The p
Jan 1, 1998
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A Rational Method for Predicting Damage to Historical Structures Subjected to Blasting Vibrations
By Kenneth Medearis
The accurate prediction of possible damage to historic structures subjected to blasting-related ground motions is not infrequently the dominant factor in whether or not a mining or quarrying operation
Jan 1, 1993
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Engineering Considerations for Blasting at the Hanging Lake Tunnel Project, Glenwood Canyon, Colorado
By Thomas R. Scotese, John L. Ackerman
The Hanging Lake Tunnel Project represents a major portion of the Glenwood Canyon Project, the last piece of Interstate 70 to be constructed. The project features twin bore, large span rock tunnels an
Jan 1, 1992
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Journal: Blastserve A Discussion Forum for ISEE Members (8c2fadf8-c3ea-4d52-bed4-9f74e7ae96c9)
Lightning Strikes on Vehicles Transporting Explosives The police in one of the countries in which we operate has asked about the consequences of a lightning strike on a vehicle (box van) carrying deto
Jan 1, 2011
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Demolition of the ADMP-1 Jackup Platform for Aramco in the Arabain Gulf
By J S. Brower
Disposing of the AMDP-1, Jackup drilling rig in the Arabian Gulf.
Jan 1, 1978
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Anfo Versus 100% Emulsion: Quantitative Assessment of Performance With Constant Drilling and Blasting Costs
By Neal Lee, Braden Lusk, John Silva Castro
One of the most common assumptions regarding the use of ANFO versus utilizing 100% sensitized emulsion is that ANFO “turns over” the muck-pile better, due to the “higher gas volume” supposedly inheren
Jan 1, 2012
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Prediction of Fines in Mining and Quarrying Applications Using the Fracture Density Model (FDM)
By C. Mick Lownds, Dale S. Preece, Ali Bhuiyan
FDM (Fracture Density Model) is a three-dimensional mechanistic model of blast induced rock fragmentation. FDM uses several computational mechanics algorithms to simulate the effect of blasting in dif
Feb 6, 2023
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Detonation Pressure Measurement Using the Manganin Gauge
By Richard H. Granhom
Detonation pressure, or Chapman-Jouguet pressure, is an intrinsic property of an explosive, and like detonation velocity, is an indicator of explosive performance. Pressure and velocity are also impor
Jan 1, 1991
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Controlled Study of the Effects of Temperature and Humidity vs Blast Vibrations on Homes
By R Wing, D Corkery
"Several mines in the region of Sudbury, Ontario, occur in or near populated areas. In anattempt to examine the effects of environmental changes and blast induced vibrations onhomes in the area, a mon
Jan 1, 1993
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Quarrying Operations for Large Civil Engineering Projects in Remote Areas in Underdeveloped Countries
By Rowland Jones
This type of quarrying is very much different from that of established quarries in developed countries, demanding somewhat unorthodox techniques to produce the variety of materials required. The deman
Jan 1, 1977
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A Repumpable Emulsion for Use in Mines Subject to Afterblast Sulfide Dust Explosions
By Tom Medak, Don H. Cranney, G Paul McKay, R Douglas Reid
Explosive initiated afterblast dust explosions can occur in high sulfide ore mines when the flame generated by the detonating explosives ignites the sulfide dust produced from the blast, from previous
Jan 1, 1994
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New Horizons of the Engineering of Blasting in Service of Productivity: Selective Sequencing
By Matias Suarez, Diego Zenteno
This paper is aimed to display the new advancements of blasting engineering done in different mining sites throughout the country, associated to electronic sequencing, energy of the explosive and its
Feb 1, 2020
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New Horizons of the Engineering of Blasting in Service of Productivity: Selective Sequencing
By Matias Suarez, Diego Zenteno
It is known that the introduction of electronic timing in the sequencing of blasting has changed the vision and way in which mining is developed. It is possible to deal with more complex and sophistic
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Training of Shotfirers in Queensland, Australia
By A. Pope
I have attended two Explosives Engineers’ Conferences in the past 4 years. The first was in Brighton, England with the European Federation of Explosives Engineers in 2005 and the International Society
Jan 1, 2009
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Automatic Blast Design Based on Autonomous Drone
By Thierry Bernard
New technology to automatically design a blast based on autonomous drone. The process of flying a drone, calculating the 3D cloud of points, generating the critical face profiles and placing holes aut
Feb 1, 2020
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PowerAN Emulsion/ANFO Explosives System
By John C. Brulia
PowerAN is a tradename of Atlas Powder Company for a new line of explosive products comprising blends of emulsion and ANFO in a variety of bulk and packaged grades. The bulk PowerAN grades are either
Jan 1, 1985
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Perceptions of the Use of Explosives in Urban Areas
By Harry L. Siebert, Thomas Gelormino
Rock excavation in urban areas occurs with maximum public exposure and, with the aid of explosives, is one of the challenges facing this industry today. Such excavation is also a hidden factor in area
Jan 1, 1985
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New Firing Method for Underwater Blasting (Remote-Controlled Blasting System by Electromagnetic Firing Method)
By Takeo Ueda, Masashi Nakano
We have developed a new blasting system remotely controlled by an electromagnetic firing method, which has proved advantageously applicable to sites where rapid tidal current or deep water may cause s
Jan 1, 1983
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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