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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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Vibration Effects on Historic StructuresBy Randy Wheeler
One of the more difficult topics to address concerns the effects of vibration on historic structures. Not only blast induced vibration, but also vibration from other transient and semi-continuous sour
Jan 1, 2004
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Improved Blasting Using Low Density Ammonium Nitrate Prills; Improved Fragmentation via the Use of Blast Controls PlansBy Ron Frye, Carl Liibbe, Wayne Curtis, Julie Pecori, Dan Leach
Test work comparing the performance of a Low Density Porous Ammonium Nitrate Prill to regular Porous Ammonium Nitrate conducted in Pennsylvania and New York showed that less ammonium nitrate was requi
Jan 1, 1997
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A Case Study of Near-Field Vibration Monitoring, Analysis, And ModelingBy Tamara Whitaker, James Gunderson, Ruilin Yang
This paper presents the results of a vibration control project conducted in soft overburden at a surface coal mine located in the western United States. The study uses near-field blast vibration monit
Jan 1, 2008
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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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3D Computer Simulation of Bench Blasting with Precise Delay TimingBy Dale S. Preece
"Detonation delay timing has been an important aspect of quality rock blasting for decades. Detonators that enable delay timing have improved over the years especially with the recent advent of precis
Jan 1, 2009
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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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Strategic Public Relations for Underground Conservatory at Tennessee Governor’s ResidenceBy Jake Hutchison, Wade Hutchison
The opposition to the project has risen as a result of some political pressures and from public perceptions about the project’s necessity and its impact on the neighborhood. As a result of this contro
Jan 1, 2009
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Blasting Overhangs Close to a Vibration Sensitive StructureBy R. Franfield
This paper describes a situation that many drilling and blasting contractors have found themselves in – a client?s fear of the use of explosives. In the summer of 2007 Blasting Services Ltd was asked
Jan 1, 2009
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A Modern Analytical Approach to Generating Site Specific Blast DesignsBy Bruce Vandenberg
A 3D, PC based computer program is currently under development by Blasting Analysis International, Inc., to analyze the kinetics of full scale blasts with two or more high-speed motion picture cameras
Jan 1, 1990
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Evaluating Delay Effects on Ground Vibrations with Simulated Vibration WaveformsBy Randall M. Wheeler
It is important to be able to quantify the effects of blast delay designs on vibration characteristics. White was the first company to develop commercially available software, called Alpha-Blast, for
Jan 1, 1994
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AEL Ring 2000While ring-blasting techniques offer substantial benefits, there are intrinsic problems that are exacerbated when large blocks of ore are mined in attempts to improve the production economics. These p
Jan 1, 2000
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Seismic Analysis of Explosive PerformanceBy Shazad Hosein, William Birch, Douglas A. Anderson
This paper will present the results of tests of a new method for assessing explosive performance using wavelet transform analysis of standard blast seismograms. The theoretical background of the metho
Jan 1, 2015
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Crater Blasting Techniques and Designs in Compacted SoilsBy Patrick D. McLaughlin
Crater blasting techniques have had relatively little application in the surface mining industry. This is not surprising, considering the geometry required to efficiently use cratering. The more widel
Jan 1, 1992
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Controlled Blast Induced Liquefaction of Water Saturated Sands Using 250 m Long Horizontal Holes and Electronic DetonatorsBy M. Ganster, H. Krenn
The mission of the project is the fast and cost-effective rehabilitation of decommissioned lignite mining and coal upgrading facilities. This is necessary to ensure the successful future utilization o
Jan 1, 2013
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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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A Practical Approach to Managing Control of FlyrockBy Simon St. John Tose
We have had a long history in supporting the development of training material to ensure “safe” blasting. This has been provided as both significant technical guidance to the industry and input into th
Jan 1, 2013
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Sources of Nitrate in Groundwater Near Roadway Rock Blasting SitesBy David M. Langlais, Krystle Pelham
"Explosives used in blasting operations, natural and anthropogenic sources such as septic systems,fertilizers, and decomposing vegetation can potentially contaminate groundwater with nitrate in thevic
Jan 1, 2016
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A Method to Calculate the Dynamic Strain Tensor from Blast Vibration Records - Theory and Measurement Error AnalysisBy 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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Ore Waste and Dilution Studies of Surface Mineral Blasting with 3D Distinct Element Heave ModelsBy Stewart A. Silling, Dale S. Preece
The two key results of rock blasting are fragmentation and movement of geomaterials. Movement/flow of the blasted rock is often referred to as heave. Modeling the movement of full scale blasting is no
Jan 1, 2016