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Experimental Data Indicating a Direct Link Between the Rate of Stemming Ejection and the Degree of Rock Face Movement in Bench BlastingBy Paul Worsey
A strong inverse relationship between rock face movement and stemming ejection is presented. Previously unpublished data from blast control plug research and development involving high speed video ana
Jan 1, 1990
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Underground Pillar Blasting with Bulk Emulsion explosivesBy H Russell
An account of an experimental blast at the Sullivan Mine involving a small pillar drilled with 4 1/2" diameter up-holes, and loaded with emulsion explosives from a truck-mounted tank/pump unit.
Jan 1, 1984
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Field Study of the Blasting Vibration Stability of Large Natrual Rock PinnaclesBy Robert A. Cummings, Francis S. Kendorski, Charles H. Dowding
During the summer of 1980, a field project was carried out to determine the stability of the beautiful and dramatic natural limestone pinnacles (locally termed "Hoodoos") at Bryce Canyon National Park
Jan 1, 1982
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The Effect of Explosive Type and Delay Between Rows on FragmentationBy Mark S. Stagg, Rolfe E. Otterness, Stephen A. Rholl
The Bureau of Mines fired seven test blasts in a 22-ft bench of limestone, screening the material to investigate the influence of explosive type and between row delays on fragmentation. Four 4-hole, s
Jan 1, 1989
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Seismic Study of the Dynamic Response of Rock to Cylindrical Charges Fired in a Half and a Quarter Space GeometryBy Sharon K. Reamer, Klaus G. Hinzen
A series of controlled seismic experiments was performed in a limestone quarry in southern Germany to study seismic effects of cylindrical charges fired in both a half space (HS) (burden 63 m) and qua
Jan 1, 1991
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Journal: 20th Annual Photo and Art Contest - Honorable Mention "Snoqualmie Pass"By Corry Goumans
Photos 1 - 4 – Chris Elliott is a rock slope supervisor on a construction project east of Seattle, Washington. His job is to look after a “two man” scaling crew working on the rock bluffs some 300 fee
Jan 1, 2014
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Journal: Safety Talk, Drilling Safety – Minimizing Risk FactorsBy William Reisz
Many different types of drills coming in a wide range of sizes and configurations are used in the blasting industry today. While each system may have its own unique attributes and capabilities, it may
Jan 1, 2013
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Use of Visualization Tools for Drill and Blast ActivitiesBy Carlos Alvarado, Hernan Narea, Jhon Silva, Bryan Townsend, Katherine Gil, Brayan Caceres, Felipe Pontanilla
With the promising development of new technologies, automation in Drill and Blasting (D&B) is on the horizon. The data generated in all D&B activities, which is currently segregated, can be linked to
Jan 21, 2025
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Modelling Complex Shock Tunnel for Shock Interaction and Transfer TestingBy Catherine Johnson, Barbara Rutter
The shock tunnel located at the Missouri University of Science and Technology Experimental Mine is 65 feet 9 inches (20.0406 m) in length. The tests performed inside of this tunnel are either arena te
Jan 1, 2018
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Training of Shotfirers in Queensland, AustraliaBy 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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Digital Tunnel Blasting in a Sensitive Environment: N1 Porto Tunnel Project, PortugalBy Yannick Bleuzen, Manuel Joao, Frederic Monath, Miguel Quaresma
The N1 Porto tunnel project is a 650m segment of large-scale civil engineering plan to improve traffic flow between Porto’s downtown district, the Santo Antonio hospital district and the highway acces
Jan 1, 2005
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PowerAN Emulsion/ANFO Explosives SystemBy 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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Vertical Drop – the Challenge of Transporting Explosives UndergroundBy Ayman Tawadrous, Hendrik Botha, Simon St J Tose
The early miners and their mules always had the challenge of transporting unstable dynamite underground. The modern pumpable explosives, whilst far safer, still present a major logistics challenge for
Jan 21, 2025
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Blast Design for Optimizing Fragmentation While Controlling Frequency of Ground VibrationBy Andrew P. Ritter, Douglas A. Anderson, Stephen R. Winzer
We have adopted a unified approach to blast design. Based on earlier research, we chose minimum relief of 3.4 ms/ft between holes in a row and 8.6 ms/ft between echelons to produce good fragmentation.
Jan 1, 1982
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Close-In Blasting at CornellBy Jeff Yaro, Steven P. Case, Carl Kish
This project involved the construction of a new 4-story library on the campus of Cornell University in Ithaca, New York. The new building was constructed completely below grade, adjoining several of t
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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Wight Pit High Grade Wall SlashBy Art Frye, Lee Pratt, Gaichang Zhao, Greg Newman
This paper will discuss the Wight Pit wall slash at the Mount Polley open-pit copper-gold mine that scavenged a high grade block of ore from two double-benches of the pit wall. The Wight Pit orebody,
Jan 1, 2011
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Studies on Blasting Accident – A Case StudyBy B. M. P. Pingua, M. Nabiullah
Number of mine accidents occurred in Indian surface mines are due to poor quality of explosives and blasting accessories. Amlori open cast project is one of the major coal producing projects in India.
Jan 1, 2008
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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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Blast Densification to Prevent Soil Liquefaction in Volcanic Avalance Debris for Construction of the South Coldwatercreek Bridge, Mt. St. HelensBy Ron J. Elliott, David G. Otto
This project involved deep blast densification of recent volcanic avalanche debris deposits consisting of a 43 meter thickness of loose clean to slightly silty sand, gravel, cobbles and boulders depos
Jan 1, 1994