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Rational Methodologies for Setting Blast Vibration Limits for HousesBy Adrian Moore, Alan Richards
"It has been common practice to set blast vibration limits for structures using an “observational”approach whereby limits are set at a level based on observations of damage, or the lack ofdamage, comb
Jan 1, 2013
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Field Testing of Aluminum Mesh for Blast Mitigation PropertiesBy Joshua Hoffman, Braden Lusk, Kyle Perry
Despite its porous and lightweight characteristics, aluminum mesh is believed to have blast mitigation properties. The current use of the mesh includes fuel tanks for airplanes, boats, and fuel statio
Jan 1, 2009
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Blasting Conditions Couldn't be WorseBy John Atkinson, Steve Repola
This paper will describe two blasting plans that have been developed for American Aggregates' Marble Cliff Quarry located near Columbus, Ohio. Two different limestone formations are mined on different
Jan 1, 1993
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Optimized Blasting Methods for TBM Launching Shaft Construction Beneath the Panama Canal: A Case StudyBy Jose Pineda, Abraham Lindo
The Panama Metro System’s Network expansion involves excavating a launching shaft for a tunnel boring machine (TBM) to traverse beneath the Panama Canal. The blasting needed for this shaft constructio
Jan 21, 2025
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Journal: Safety Talk / Highwall Safety from a Blaster’s PerspectiveBy W. Reisz
The fear of heights is a natural defense against performing a dangerous and unnatural act such as standing on the edge of a hundred foot wall. Yet through familiarity, a casual attitude often exists.
Jan 1, 2009
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New Dimensions for Drilling and Blasting In Surface Mining of Precious MetalsBy Tom Short, Paul Kunze
In this paper, the authors describe major changes in drilling and blasting methods instituted at the Zortman And Landusky Mining Company Properties to maintain the viability of these north central Mon
Jan 1, 1986
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A Model to Predict Peak Particle Velocity for Near-field Blast Vibration - Based on Dominant Charge, Waveform Broadening, Delay Time Modeling, and Non-Linear Charge Weight SuperpositionBy Scott Scovira, Ruilin Yang
This paper presents a non-waveform blast vibration model for the near-fi eld. The model uses the concept of a dominant charge augmented by other contributing charges estimated using a scaled time wind
Jan 1, 2008
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The Influence of External Detonation Generated Plasmas Upon the Performance of Semi-Confined Explosive CartridgesBy Lex L. Udy
External detonation generated plasmas, highly ionized zones of reacting material ejected from the surface of detonating explosive charges, are shown to be the cause of channel desensitization, i.e., t
Jan 1, 1977
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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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Investigations of Shock Tunnel Dynamics and Energy RealizationBy Joshua Hoffman, Braden Lusk, Perry Kyle
With the advent of any new technology comes the necessity of fully understanding the mechanics of that technology. The Shock Tunnel is one such technology that provides a cost effective means of simul
Jan 1, 2009
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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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Large Scale Measurement of Velocity of DetonationBy Alastair Torrance, Braden T. Lusk, MinGi Seo, Gary Cavanough
Velocity of Detonation (VOD) is the most commonly used method to determine explosive performance as VOD is a function of the confinement (ground conditions) density and composition of the explosive. T
Jan 1, 2019
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Journal: Vibration Control Through Better PredictionsBy Keith Best
It has been said that when a person does something right no one remembers but when they do something wrong no one forgets. This statement, when applied to the explosives industry, has never been truer
Jan 1, 2008
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Modeling Reactive Sulfide Rock at the Red Dog MineBy Norman Paley, Zachary Pickett
The Red Dog Mine is a high-grade zinc-lead mine located in northwest Alaska which began operations in November 1989. In June 2014 the upper half of a charge in a trim shot in the Aqqaluk pit deflagrat
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Are Electronic Initiation Systems the Unique Answer to Solve Blasting Issues?By Jesus A. Pascual de Blas
After 30 years of development and introduction, electronic initiation systems are now well established in blasting applications, both mining, quarrying and civil works. In terms of blast technology, i
Jan 1, 2019
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Quarry Rehabilitation and Revival: A Case StudyBy Martin Schrier
This paper is an overview of a granite quarry cleanup near Kirkland Lake, Ontario, Canada. A combination of local geology and previous subpar blasting techniques led to the quarry needing significant
Jan 1, 2018
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Seed Wave Modeling to Natural Caves Protection in Mining OperationsBy Alejandro Rosario, Ricardo González
The restrictions imposed by the Brazilian environmental legislation regarding natural caves lead to a block of substantial amount of mineral reserves. Mining activities can released caves, as long as
Jan 1, 2019
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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
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Blasting For A Lokotrack SystemBy Roger L. Keller
Cautious, productive blasting is employed in the adaptation of a mobile crushing system extending into a highway through cut. In Hong Kong's final chapter of infrastructure development in preparation
Jan 1, 1998
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Various Methods of the Ground Vibration AssessmentBy Dworzak, Andrzej Biessikirski, Jozef Pyra
During the detonation process 20-30% of the energy is being consumed only on the quarrying pro-cess. The remaining amount of the energy generates harmful effects such as: shock wave, acoustic wave, fl
Jan 1, 2015