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Engineering Geophysics for the Mining and Construction IndustriesBy Douglas Rudenko
Most engineers, mine operators, or contractors acknowledge the importance of having accurate subsurface information in order to plan a project or solve a problem. Conventional methods of exploring the
Jan 1, 1998
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Testing a Crisis Management System via the Simulation of a Bulk Emulsion Truck Fire - Learning Through CollaborationBy Rob Farnfield, Ben Williams, Ashley Haslett, Diane Cartledge
Major accidents that occur within our industry are often tragic and expensive, damaging reputation and threaten the livelihood of the business. There isn’t anything in them that can be seen as positiv
Jan 1, 2016
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Production Blasting with Electronic Delay Detonators at Peak QuarryBy H G. Bosmare, G Bedser, C V. B Cunningham
Peak Quany has achieved substantial improvements to its bottom lie by giving close attention to blasting practice, and in pr@icnlar by introducing electronic delay detonators for routine production bl
Jan 1, 1998
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Precision Delay Detonators and Their Effect on Blasting Performance in Quarry BlastsBy B Mohanty, M Alam, F Gauthuer
A series of eleven full-scale production blasts has been earned out in a limestone quarry to study the effect of delay interval and its precision on overall blasting performance. The quarry employed A
Jan 1, 1991
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On Board Excavator Dilution DetectorBy Benjamin Cebrian
Traditional dilution control systems range from computer modeling, use of physical markers on the field as polypipes to a technology that marks some control points where displacement is measured. The
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Understanding Toxic Fumes from Mining ExplosivesBy Michael S. Wieland
"Toxic fumes cause fatal andnonfatal incidents in underground mining, where the working environment tends to trap the fumes, hindering the restoration of non-harmful conditions. Workers can underestim
Jan 1, 1997
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Blast-Induced Heave Modeling in Three DimensionsBy Dale Preece, Ayman Tawadrous
This paper presents a number of examples of three-dimensional blast modeling in both surface and underground environments that include time-delay explosive decking. These examples include: 1) quarry b
Jan 1, 2014
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High Resolution Seismic Refractin Temography for Determining Depth of Blast Induced Damage in a Mine WallBy J A. Singer, S R. Iverson, C A. Link
High resolution seismic refraction tomography has proved to be a useful tool to effectively estimate depth of blast induced damage in a mine face. Excavation blast damage can be as shallow as 1 to 2m
Jan 1, 2009
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Impact of fine Aluminum on ANFO ExplosivesBy O. Rielo, P. Katsabanis
Traditionally fine aluminum is not used in dry commercial explosives due to the hazard associated with aluminum dust explosions during mixing. An industrial process has been developed which enables th
Jan 1, 2009
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Modified Case Charge for Avalanche ControlBy Eduardo Lozano, Vilem Petr
This paper provides an overview of a new method for avalanche control using a high explosive charge placed at the avalanche runout zone: the case charge technique. This new avalanche control technique
Jan 1, 2018
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Delay Blasting Cap Corrosion of the Nonel by Acid WaterBy Noelia Valencia, Carlos Agreda, Jean Arenales, Juan Llerena
"In this technical paper is reported the several tests and the preliminary results that has been obtained so far. It must be emphasized that this investigation was started several months ago.On the ot
Jan 1, 2016
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Blasting and Comminution Choices for the Management of the Mining BusinessBy Alexandre Passos, Giorgio De Tomi, Tatiane Marin, Dennis Cremonese, Jacopo Seccatore
"In the mining industry, rock excavation is the first phase of the comminution process. Downstreamoperations such as secondary breaking, crushing and milling terminate the process, reducing the size o
Jan 1, 2016
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Visualization of Cratering in an Underwater EnvironmentBy D. J. Goodings, R. J. Bonenberger, H. U. Leiste, W. L. Foumey
This paper describes a series of two-dimensional tests conducted and filmed with a high-speed (500 frames per second) video camera. The purpose of these tests was to provide a better understanding of
Jan 1, 2000
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Blasting a New Entrance to Carroll CaveBy Paul Worsey, Dave McCool, Ryan Freeman, Chris Wolters, Rick Hines, John Bowles
Carroll Cave, located in Camden County, in south central Missouri, is one of the most significant caves in Missouri with over 12 miles of mapped passages and over 100 known but unmapped side passages.
Jan 1, 2003
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Vibration Control Blasting for Low Stability Final WallBy 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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Quake, Quarry, or QuackBy Dominic C, Gregory B. Poole
On December 12, 2018 at 4:14 AM EST, an earthquake registering a 4.4 magnitude on the Richter Scale occurred in central Tennessee. According to a survey posted on the USGS website, this earthquake was
Feb 1, 2020
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Automation of Drill and Blast - Measurement Techniques to Develop Standard ProceduresBy Ewan Selers, Gary Cavanough
Drilling automation technology is well advanced and automated drill rigs are in use at a number of operating mines. This is not the case for the other drill and blast processes due to significant tech
Jan 1, 2016
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Blast Master Plan: the Key to efficiency and optimization. Case study at Ellatzite copper mine.By Grigor Mishev, Georgi Petrov, Benjamin Cebrian
Before designing a single blast or all the blasts on a pit level, it is critical to assess the main goal on each. To do this, a series of constraints must be taken into account: wall protection, vibra
Jan 1, 2016
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Shaft Sinking: Drill and Blast & Vertical Shaft Sinking MachinesBy Sam Ammermann, William Heasley
"The mining industry is on an ever accelerating path to complete mechanization. As companiesutilize more sophisticated and efficient methods of blasting, a more thorough look should begiven to the pro
Jan 1, 2016
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Advanced Blast Modeling for Mining Steeply Dipping Coal SeamsBy Dan L'Heureux, Joe Haid, Stephen H. Chung
Most coal deposits in Western Canada involve steeply dipping multiple seams. An efficient way to recover coal seams would be to drill through the seams and blast both the overlying and underlying wast
Jan 1, 1998