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Magnitude 2.8 Earthquake Caused by 90 Pounds (41 kg) Per Delay! Not So Fast
By D. Rudenko, C. T. Aimone-Martin, J. K. Ratliff, I. G. Wong, J. Aiken, R. E. Burnham, T. A. Davidsavor
A small quarry blast was conducted with a maximum of 90 pounds per delay and shortly afterwards, area residents sensed ground motion and building shaking indicative of an earthquake. In addition, seis
Feb 6, 2023
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Vibration Control Blasting for Low Stability Final Wall
By Greg Wyartt
In the Pilbara region of Western Australia, an iron ore mine is undertaking a high wall cut-back to improve stability and allow access to deeper ore deposits. Several sections of the wall have been cl
Jan 1, 2018
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A New Generation of Shock Tube Detonators
By John Watson
The earliest known records related to mining document in dramatic terms the fact that mining methods have undergone significant change over the centuries. Wooden wedges, hammers and chisels, “fne sett
Jan 1, 1997
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A Computer Model for Explosively Induced Rock Fragmentation During Mining Operations
By J W. Simmons, T H. Antoun
"Rock fragmentation is an important component of explosive mining and excavation techniques andis the culmination of a damage accumulation process dominated by crack propagation. During the past 20 ye
Jan 1, 1995
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Journal: History of ISEE – Timeline / 35 Years
1974 The Society of Explosives Engineers officially formed to “advance the art and science of explosives engineering” on August 20, 1974 in Pittsburgh, Pennsylvania.
Jan 1, 2010
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Quantifying Your Blast Fragmentation Using Split-Desktop
By Kirstin Girdner, Tom BoBo, Brian Norton, John Kemeny
Split Engineering is a truly customer oriented company dedicated to providing quantified fragmentation information of the highest integrity to enable process management and control. Technical decision
Jan 1, 2000
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Next Generation Laser Surveying Systems! Blast Design and Analysis Software
By Steve Colbum
LTl’s MapStar LPS (laser positioning system) utilize both tripod mounted and hand held reflectorless distance meters. These are eye safe, easy-to-use, and specifically designed to endure the harsh env
Jan 1, 2000
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Generating Site Specific Blast Designs with State-of-the-Art Blast Monitoring Instrumentation and PC Based Analytical Techniques
The common approach of designing blasts on a trial and error basis is quickly coming to an end. When utilizing the full scale blast environment, trial and error can quickly become cost prohibitive and
Jan 1, 1994
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Application of Underground Bulk Explosives in Polyethylene Pipes for Perimeter Control
By Jena Moshen
Underground Bulk Systems (UBS) technology has gained widespread application in tunneling and underground mining owing to its safety, reliability, increased Velocity of Detonation (VOD) and excellent r
Jan 1, 2018
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Journal: Blasting in the New Millennium: Blasters Take on the Role of Blast Site Manager
By Steve Dillingham
Today, a typical blaster is likely to wear many hats, including, but not limited to, supervisor, risk manager, safety coordinator, explosives engineer, communicator, as well as professional decision m
Jan 1, 2001
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A Method to Calculate the Dynamic Strain Tensor from Blast Vibration Records - Theory and Measurement Error Analysis
By Ruilin Yang
"Blast vibrations are essentially a strain/stress wave propagating in rock or structures inthe vicinity of a blast. However, blast vibration has always been quantified in terms ofpeak particle velocit
Jan 1, 2012
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Signature Hole Analysis and Vibration Modeling: An Indonesian Case Study
By Wawa Jaka Sungkawa, Slamet Rachman Jaka, Tom Dermody
Nowadays, with such a focus on environmental protection, surface mining activities have come under pressure to ensure their activities do not adversely affect the local surroundings. As part of the ex
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479 Charges, 13 Decks...120 Meters Above a Crushing Plant
By Thierry Bernard
This case study shows how a unique combination of field measurements and advanced technologies allowed blasters designing, loading and firing an incredibly challenging quarry blast.
Jan 1, 2015
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Seismic Transient with Low Frequencies at Short Distances Case History: Tunnel Blasting in Urban Site at Isola Liri (Italy)
By Roberto Folchi
"This article deals with the excavation of a tunnel below the town of Isola LIRI, nearFrosinone, in central Italy. The tunnel was driven into a conglomerate formation, of lacustrine_fluvial origins, c
Jan 1, 1993
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Deep water excavation with shaped charges: a case history in Lake Mead, Boulder City, Nevada, USA
By Roberto Folchi, Hans Wallin
Lake Mead, the largest man-made reservoir in the United States, is located about 30 miles southeast of Las Vegas, Nevada. For the construction of Lake Mead third water intake, which is entirely placed
Jan 1, 2012
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Application and Economics of Overburden Casting: Can it Work for You?
By Conny Postupack
To make money in mining coal you have to sell it for a lot more than it cost you to get it out of the ground. And yet, every year it cost us more and more to stay inbusiness, while the price we get fo
Jan 1, 1990
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Social Cost Benefit Analysis of Alumized ANFO
By Gordon Lovegrove, Jeffrey Leob, Dwayne Tannant
It has long been known that the combination of aluminum (AL) powder to ammonium nitrate (AN) / fuel oil (FO) can greatly enhance fragmentation or ultimately reduce the number of blast holes in a patte
Jan 1, 2011
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An Experimental Method for Producing a Micro-Particle Ammonium Nitrate (MP-AN)
By Christopher Jon Preston
This paper describes a type of ammonium nitrate (AN) produced in a patented experimental atomization/aerodynamic process. This AN exhibits outstanding properties for use as a main ingredient to a new
Jan 1, 2015
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A Model for Near and Farfield Blast Vibration Based on Multiple Seed Waveforms and Transfer Functions
By D. Scott Scovira, Ruilin Yang
Blast vibration in the highwall from a cast blast in open pit mines or in the hanging walls from a stope blast in underground mines is a common concern. Vibration in such cases is a typical near-field
Jan 1, 2010
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"Synchronized Blasting Demolition of Workshop and Chimney under ComplicatedConditions"
By Jun Yang, Zongshan Zou, Mei Qu, Jianjun Zuo
For technical renovation of the thermal plant, one frame structure workshop of 50,000 m2 (59,800 yd2) construction area and one reinforcement concrete chimney of 150m (492 ft) height shall be demolish
Jan 1, 2016