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Elements of Dynamic Airblast Overpressure ModellingBy A. S. Romphf, C. K. McKenzie
Recent full-scale field studies involving single-hole charges fired to free faces under a wide range of operating conditions have delivered precious insights into airblast characteristics and propagat
Jan 26, 2026
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Blasting Related Aggregate Size OptimizationBy John Cory, Ran Tamir
Blasting data analytics are being increasing used to increase mining productivity, reduce mining costs, maximize high margin aggregate products, and to reduce fines. Three examples will be illustrated
Jan 1, 2012
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Advantages of EFI Based Detonator Technology in Commercial Blasting ApplicationsBy Richard Givens, Thomas Baginski
Technological advancements in warhead designs and implementations have driven the development of arrayed initiation networks of highly accurate, highly reliable, and extremely safe detonators. Recent
Jan 1, 2011
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Source Scaling of Single-Fired and Delay-Fired Explosions Constrained by In-Mine and Regional SeismogramsBy Brian Stump, D. Craig Pearson
This work quantifies seismic coupling as a function of charge weight for single-fired (simultaneously detonated) explosions observed in the mine and at regional distances. These single-fired explosion
Jan 1, 2002
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Institute of Makers of Explosives Safety Analysis for Risk (IMESAFR): A Tolerable Risk Criteria – What Is Safe Enough?By Debra Satkowiak, Ronald Thomas
The Institute of Makers of Explosives (IME), a non-profit safety and security organization founded in 1913, is known for its industry best practices, Safety Library Publications (SLP), some of which h
Jan 1, 2017
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A Long Round Test in Conventional Room and Pillar MiningBy Thomas Barkley
Mining tradition holds that a parallel round underground can not be any deeper than it’s smallest face dimension. ln other words, a mine using a 12’ (3.7 m) high by 24’ (7.3 m) wide room and pillar mi
Jan 1, 2000
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Drill and Blast Optimization at the Sparkhule Limestone QuarryBy Paul L. Matrin
This paper will discuss the recent and on-going drill and blast optimization measures at the Sparkhule Limestone Quarry, which have resulted in a 44% reduction of drill and blast unit costs per ton of
Jan 1, 2004
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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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Excavation for Underground Salt Plant (1f20b243-bfe6-4609-ad5c-cf707711398b)By Steven P. Case
To meet salt production needs over the remaining life of the Cayuga Mine at Lansing, New York, the Salt Division of Cargill, Inc. decided to build a new underground screening plant. The new plant requ
Jan 1, 1996
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Paper or Electronic Records – Ways to Improve Blast Documentation and RecordkeepingBy Travis A. Davidson, Ralph E. Burnham, Cathy Aimone-Martin, J. Kelly Ratliff
Blasters face a long list of tasks to execute daily—from vehicle inspections to blast design and layout, hole loading and tie-in, securing the site, and finally, safely executing the blast. Good pract
Jan 21, 2025
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A New Digital Centralized Blasting SystemBy Peter Reinders, Dirk Hummel
This paper describes a new digital Centralized Blasting System (CBS), which is currently being introduced into underground applications. The CBS makes use of the field-proven detonator and equipment t
Jan 1, 2004
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Trim Blasting Designs in the Morenci MineBy Karl Christopherson, Vanessa de Viterbo
Trim blasting is an integral part of the mining processes at the Morenci Mine, a Freeport-McMoRan Copper & Gold Inc. property. Trim blasting near high-walls or Finals blasting requires a tighter distr
Jan 1, 2011
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Perimeter Blasting with the ANFO-Spoon TechniqueBy Larry Ng, Keith McDonald
The benefits of controlled blasting techniques have gained increasing recognition by the mining industry in recent years. The utilization of an effective controlled blasting programme can result in a
Jan 1, 1994
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Implementation of Blast Vibration Frequency Control Technology at R & F Coal CompanyBy Doug Johnson
This paper reviews the field implementation of R & F Coal's blasting optimization work concerning analysis, prediction, and control of overburden blasting vibrations using site specific measurements a
Jan 1, 1988
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A Comparison of Theoretical Calculations to Hydro code-simulated Variables to assist in the Design of Mousetrap-type Planar Detonation Wave GeneratorsBy Clayton Thompson
Linear detonation wave generators (DWGs) shape a detonation wave so that every portion of the wavefront reaches the target “line” simultaneously. A projection-type linear DWG uses Gurney plate velocit
Jan 1, 2011
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Explosives Casting Technology in Surface MiningBy D E. Shaw, J B. Case, J Gusek
Explosive casting of overburden is defined as the use of explosives in blasting to move overburden to a spoil pile without rehandling. Studies of the economic feasibility of the method, and the formul
Jan 1, 1980
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Swedish Cautious Blast Excavation at the CSM/ONWI Test Site in ColoradoBy Roger Holmberg, William Hustrulid
Swedish cautious blasting techniques were used to excavate a room at the CSM Experimental Mine in Idaho Springs, Colorado,as part of a ONWI/DOE sponsored nuclear waste disposal research program.
Jan 1, 1981
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Airblast Reduction from Effective Blasthole StemmingBy Duane Skidmore, Francis Otuonye, Calvin J. Konya
Proper stemming not only affects the rock breakage process, but also controls the unwanted side effects of blasting such as airblast, ground vibration, and flyrock. Little research has been conducted
Jan 1, 1982
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Varying Stemming Heights Based on the Horizontal Relief Available to Each HoleBy Neal Lee
Reduced relief horizontally means an increase in energy expended vertically into the rock surrounding the stemming column, and potentially through the stemming column. The vast majority of holes in an
Feb 6, 2023
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Refinements in Blasting Practices at Minntac MineBy B Kniivila, A B. Andrews, T Lerick, Keith Jansen
Minntac Mine is a large, open pit taconite mine located at the center of the Mesabi Iron Range in northern Minnesota. The planned development of the Mine in the direction of nearby communities prompte
Jan 1, 1984