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Proactive Controls for Highwall StabilityBy Trevor Ames
Highwall instability, and sometimes referred to as ground failures, historically are a consistent contributor of mine injuries and fatalities within surface mines. To combat this several efforts, incl
Jan 1, 2015
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Control Blasting at Sherman MineBy Peter N. Calder, John N. Tuomi
The development of a successful control blasting program for an open pit iron mine in hard jointed rock is described. The objectives and mechanics of control blasting are discussed. Design and impleme
Jan 1, 1980
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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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Blast optimisation at limestone quarry operations – good fragmentation, less finesBy Benjamin Cebrian
Rock blasting at quarries represents multiple challenges not easy to see at first sight. Aggregate industries face similar or superior prices for explosives while extracting a material that usually is
Jan 1, 2010
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An Overview of the Effect of Soil Properties on Explosive CrateringBy Denis Rickman, Jon Windham, Stephen Akers, Byron Armstrong
The soil crater formed by detonation of an explosive charge is of considerable military interest because of the common use of explosives to create soil obstacles. The soil crater is also an important
Jan 1, 2010
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Electronic Blast Initiation – The Evolving Perception of Australian Mining OperationsBy Greg Wyartt
Although electronic detonators and blast initiation systems have been commercially available for several decades, uptake in the Australian mining industry has been very slow when compared to other glo
Jan 1, 2019
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Close-In Construction Blasting -- Impacts and Mitigation MeasuresBy Andrew F. McKown
This paper will discuss the mechanisms of potential damage from close-in construction blasting, concentrating on two mechanisms: elastic ground vibrations and non-elastic (permanent) ground deformatio
Jan 1, 1991
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Pre-Bench Blasting Design Based on Risk Analysis on a QuarryBy Gungor Tuncer, Ali Kahriman, Umit Ozer, Abdul Karadogan, Mehmet Aksoy, Ertugrul Kaya, Deniz Adiguzel
This research was performed on the quarry that will be opened to produce aggregates and rock filling material at Catalagzi region at Zonguldak providence. Excavations will be done by drilling and blas
Jan 1, 2009
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Blasting and Monitoring Practices for the MSDGC Deep Tunnel ProjectBy Kevin Cole, Dennis A. Clark, F William Laslow
Since 1976, the Metropolitan Sanitary District of Greater Chicago, (MSDGC), has commissioned the excavation of a tunnel system in the Chicago area, hundreds of feet below the surface in solid limeston
Jan 1, 1982
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Blast Modification to Improve Bench Width Reliability at the EKATI Fox PitBy D Anonby
The Fox Pit at EKATI Diamond Mine is designed with 11 m wide benches excavated using a double benching technique leaving 30 m high faces. Blasting tests were conducted to increase the percentage of be
Jan 1, 2007
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Flyrock Model Validation and ApplicationBy C. K. McKenzie
Presents outline of flyrock model and a field procedure to validate predictions of maximum projection distance. Field results are presented from 13 field tests with two different hole diameters.
Feb 1, 2020
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Improving the Amount of Material Cast at Highvale Mine Using Electronic DetonatorsBy Robert Slivinski, Kyle Hobbs, Michael Stern, John Willox, Brad Jewson
Prairie Mines & Royalty Ltd. produces over 12 million tonnes annually of thermal coal for TransAlta’s Sundance and Keephills power stations from the Highvale Mine. This opencast mine is next to a lake
Jan 1, 2008
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ICI's ExEx2000 Blasting SystemsBy Peter Duniam, Vivian Patz
History of the ExEx 1000 CAB system. l What we’ve learned using electronic timing. l Requirements for a second generation. EDD system. l The ExEx 2000 system - simple, versatile and cost effective
Jan 1, 1997
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A Multiple Blasthole Fragmentation (MBF) Model Based on Non-linear Charge Scaling, Delay Time Contribution, and Rock Dynamic FractureBy Ruilin Yang
This paper presents a fragmentation model for large production blasts. The model uses peak particle velocity (PPV) induced from the blast as a controlling parameter to predict the fragmentation size d
Jan 1, 2015
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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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Assessment of Damage inRock Subjected to Explosive LoadingBy Dal Sun Kim, Michael K. McCarter
"Comminution (crushing and grinding) of rock materials is energy-intensive and expensive. Mucheffort has been directed to improve the efficiency of conventional milling practice, but relatively little
Jan 1, 1993
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Protection from Liability Before, During, and After Blast DetonationBy Ralph E. Burnham, J. Kelly Ratliff
"The words “dynamite,” “TNT,” “explosives,” and “blasting” typically cause the general public, andjurors, apprehension and fear. Although blasting operations conducted by well-trained, skilled, andexp
Jan 1, 2016
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Production Drilling and Blasting Techniques at the Escalante Silver MineBy Eddie L. Catbagan
The Escalante silver-bearing deposit, consisting of a relatively wide and continuous quartz vein, contains openings ranging from minute to a few feet wide on the footwall and hanging wall. These openi
Jan 1, 1983
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Innovative Online Technology Enabling Optimization in Blasting OperationsBy Jim Peterson, Ricardo Freire, Mason Biernat
Variable nature of rock and face conditions, varying execution and changing nature of blasting are making ongoing optimization challenging. Intelligent planning and on-going analytics are required to
Jan 1, 2019
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Accurate Delay Detonation with Shock-TubeBy W. J. Birch, R. Farnfield
All shock-tube based initiation systems have a time lag relating to the propagation velocity of the shock-tube itself. This paper examines the exploitation of this inherent time lag to achieve delay b
Jan 1, 2009