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Real Life Considerations in Vibration Damage Criteria and MeasurementBy Derek Morris, Vito Saccheri
In the monitoring of seismic exploration (whether by explosive or vibratory energy sources), the intensity of shaking at neighboring structures can now be measured quite accurately and comprehensively
Jan 1, 2009
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Detection of Geological Features using Aerial Image Analysis and Machine LearningBy Ravi Sahu, Ankit Jha, Sudarshan Rajagopal, Purushotham Tukkaraja
Geologic structures are one of the crucial parameters in blast design. Structural geology and rock properties influence drilling patterns, blast layout, and initiation systems. A comprehensive underst
Feb 1, 2020
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New Model for Realistic 3D Blast SimulationBy BernardThierry
To be able to precisely predict the result of a mine blast before pressing the button is a goal for many blasters due to the environmental and economic constraints of our century. Based on the fundame
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Explosive-Driven Power Generation Research at the University of Missouri-RollaBy P. N. Worsey, M. Schmidt
Many advanced military systems and civilian power generation concepts postulate the availability of compact sources of electrical power capable of delivering gigawatts over microsecond time scales. Fo
Jan 1, 2000
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Optimization of Underground Blasting Techniques for Electronic Stope and Raise BlastsBy Juan Pablo Guevara, Victor Munoz, Rob Bush, Gonzalo Marias
Cerro Negro Mine, property of Goldcorp Inc., is in the process of developing four separate underground access ramps for the exploitation of high grade, narrow vein gold deposits with vertical to sub-v
Jan 1, 2015
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A New Method of Shaft SinkingBy John Cowin, Dan McCutchen
Cowin & Company has specialized in underground construction since 1924. This paper reviews the sinking of two shafts in the Alabama coal fields using bulk-loaded explosives. Each shaft is eighteen hun
Jan 1, 2000
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Expanded Rock Blast Modeling Capabilities of DMC_Blast, Including Buffer Blasting (8d3245d8-d11a-497d-a1ac-718f78cbeb14)By Dale S. Preece, J Paul Tidman, Stephen H. Chung
A discrete element computer program named DMC_BLAST (Distinct Motion Code) has been under development since 1987 for modeling rock blasting (Preece & Taylor, 1989). This program employs explicit time
Jan 1, 1997
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Causes and Recommendations for Controlling Coal Damage When Blasting OverburdenBy R Frank' Mammele Chiappetta, Conny Postupack
A major problem that has continued to plague the surface coal industry is blast induced damage to the coal seam. Atlas Powder Company has addressed this situation through seven years of field research
Jan 1, 1988
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Testing of a New Blasting Mat Constructed Using Rubber Tractor TreadsBy Matthew K. Coy, Paul N. Worsey
The work described in this paper comprised the master’s thesis work of the primary author and was conducted at the Missouri S&T experimental mine. The objective was to determine if rubber tractor trea
Jan 1, 2015
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Analysis of Cracks in Residences Near the Homestake Mining Company Open Cut MineBy Claude R. Ayoub, Charles A. Kliche, David G. McDowall
Homestake Mining Company's Open Cut Mine is located in Lead, South Dakota, in the northern Black Hills. The mine is within 300 feet of occupied residences on the south end, and within 1200 feet on the
Jan 1, 1989
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A Review of Rock Classification Methods and Applicability to Blast DesignBy Hae-Moon Choi, Sang-Don Lee, Hee Soon Shin, Choon Sunwo, Chang-Ha Ryu, Hyun-Koo Lee
Building tunnels means dealing with what rock is encountered. Relocation of the site of the underground structure is rarely possible. Tunneling engineers and miners have to cope with the quality of th
Jan 1, 2004
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The Concept of Explosives Malfunctioning in Rock BlastingBy Quian Liu
The problem of cross-hole explosive malfunctioning in rock blasting (including sympathetic detonation, desensitization and cut-offs) is a function of delay and spacing in a blast which should be desig
Jan 1, 1994
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Unlocking the Wealth From Benefit Sharing in Drill and BlastBy Lawrie Logan, Mike Wiggin
This paper will be in two parts, a discussion of the benefits available from benefit sharing as a concept followed by an examination of how this approach was applied at Mesa J Mine and what improvemen
Jan 1, 2001
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Charleroi Locks and Dam - Old River Wall Explosive DemolitionBy David Harrison
The Charleroi Locks and Dam (Figure 1) was completed in 1932 and is located on the Monongahela River, approximately 22 miles (35 km) south of Pittsburgh, in Charleroi, Pennsylvania. It is comprised of
Jan 1, 2015
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Application of Geostatistical Tools in Measurement While Drilling to Assess Geotechnical Rock Conditions in Sublevel CavingBy Clara Godoy, Álvaro Dapía, Paulo Couceiro, Håkan Schunnesson, Juan Navarro
This paper applies geostatistical tools in Measure While Drilling (MWD)data to estimate the probability distribution of values in all the points of the studied domain in order to assess the continuity
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Interior Explosive Model Development and Validation for Application in Terrorism Risk AssessmentBy Brian Hawkins, David Bradley, Rachel Gooding, Lucas Rodriguez, Patrick Wilson, Kevin Wegman, Dhruv Mittal
To better protect the nation and inform difficult defense and preparedness decisions, the Department of Homeland Security (DHS) is performing a probabilistic risk assessment of explosive terrorism ris
Jan 1, 2018
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New Developments in Surface Blast Initiation Systems - Nonel Noisless Trinkline Delays and Nonel Lead-InBy John M. Feasler
Since the advent of NONEL shock tube, the signal transmission invention developed by NITRO NOBEL AB of Gyttorp, Sweden, we have seen the following application in the United States: (1) NONEL PRIMADETS
Jan 1, 1977
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Charleroi Locks and Dam - Old River Wall Explosive Demolition - Final Stage - Phase 2By David Harrison, Brian Harrison
The Army Corps of Engineers completed the Charleroi Lock and Dam in 1932. It is located on the Monongahela river approximately 22 miles (35k) south of Pittsburgh in Charleroi, Pennsylvania. It is comp
Jan 1, 2018
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An Assessment of Ore Waste and Dilution Resulting From Buffer/Choke Blasting in Surface Gold MinesBy Dale S. Preece, J Paul Tidman, Stephen H. Chung
A discrete element computer program named DMC_BLAST (Distinct Motion Code) has been under development since 1987 for modeling rock blasting (Preece & Taylor, 1989). This program employs explicit time
Jan 1, 1998
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Modeling Coal Seam Damage in Cast BlastingBy Dale S. Preece, Stephen H. Chung
"A discrete element computer program named DMC_BLAST (Distinct Motion Code) has been underdevelopment since 1987 for modeling rock blasting (Preece & Taylor, 1989). This program employsexplicit time i
Jan 1, 1999