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High Performance Throw Blasting with i-kontm Electronic Detonators in an Environmentally Sensitive Area at Stratford Coal, NSW, Australia.Henry Walker Eltin (HWE) are the mining contractors for Gloucester Coal at Stratford mine, which is in an environmentally sensitive area in the Avon Valley, NSW, Australia. Normal blasting at Stratfor
Jan 1, 2003
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Adapting Quarry Ace for Beginners to Profile Bench Faces and Optimize Front Row Burden ControlsBy Brian Gar Wingfield
"The introduction of the QuarryMan laser profile system in 1987, along with the development of the corresponding 3-D software, gave a qualified operator pertinent information about dimensions of quarr
Jan 1, 1992
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The Influence of Rock Mass Characteristics OnoverbreakcontrolBy S. Paul Singh
Rock is a heterogeneous medium, a fact often ignored during blast design. In reality, the rock mass characteristics have a controlling influence on the outcome of a blast. If the optimum blasting resu
Jan 1, 2000
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Underwater Explosives ApplicationBy Donald F. Rapp, Thomas E. Brown
The application of commercial explosives in an underwater environment, sometimes referred to as submarine blasting, presents the blaster with a unique set of demanding conditions which require exactin
Jan 1, 1994
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Advances in Explosives TechnologyBy A B. Opperman
For many years explosives energy has been utilized in mining and construction as well as many other applications which are vital to our way of life. Many types of explosives have made their contributi
Jan 1, 1975
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BLASTCAD Three Dimensional Underground Blast Design SoftwareBy David Sprott, Patrick Andrieux
In 1990 the Noranda Technology Centre commenced a project to develop an interactive three-dimensional blast design system using a commercial computer-aided drafting and design package (CADD). The obje
Jan 1, 1991
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Desensitization and Malfunction of Cap-Sensitive Explosives and Delay DetonatorsBy Michael S. Wieland
Charge malfunction problems result from rather universal damage mechanisms and are widespread throughout surface and underground delay blasting. Recent refinements in instrumentation technology reveal
Jan 1, 1994
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Evaluation of Optical Sizing MethodsBy Russell Carter, Tom Barkley
"Optimization of blasting is hampered by the lack of inexpensive methods of measuringblast results. Optical methods of size analysis have the potential of creating abreakthrough in size analysis and i
Jan 1, 1999
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The 8 Millisecond, "Criterion": Have We Delayed Too Long in Questioning It?By Douglas A. Anderson
The simplest method used to predict ground vibration from blasting is scaled distance -the distance from a blast divided by the square root of the Pounds per delay. Pounds per delay is defined as the
Jan 1, 1989
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Pre-Blast Surveys; a Public Relations and Claim Reduction Tool (b114a2f5-7740-4145-afd2-f7ffc2af0fcd)By David Harrison, Edward J. Walter, Meitra Ferek
Agreat tool in the prevention of blasting complaints and subsequent damage claims. In today’s highly competitive industry, we are always looking for ways to become more cost effective. This article in
Jan 1, 1995
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Prediction of the Ground Vibration Attenuation Induced by Blasting for the Different Rock MassesBy A. Karadogan, G. Tuncer, A. Kahriman, S. Gorgun
This paper presents the results of ground vibration measurements induced by blasting operations at five different sites located close to the residential areas. Within the scope of this study, ground v
Jan 1, 2003
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Gravois Bluffs: Review of a Successful Large-Scale Blast-Monitoring program.By David Weidner
Public relations, regulatory compliance, determination and implementation of pre-blast inspections, and accurate blast monitoring data are all essential components when conducting blasting operations
Jan 1, 2001
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More Efficient Use of Your GPSBy Wes Bender
Considering the current interest in Global Positioning System (GPS) usage, it might be timely to look at a more efficient means of utilizing these instruments. The GPS system currently utilizes 28 sat
Jan 1, 2002
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Dynamite Daze (274eef47-64b4-4b3c-b71a-71551df93b44)We had a cold, gray winter here in Kansas City and I spent a lot of time watching out my den window at the squirrels and birds trying to get by in the lousy weather. I remember too well working in the
Jan 1, 2004
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Response of a High-Pressure Natural Gas Pipeline to Coal Mine BlastsBy Ed Clah, Catherine Aimone-Martin
The vibration response of a 30 in. diameter high-pressure (845 psi) natural gas pipeline to 11 coal mine blasts was measured. The X-52 steel pipeline was buried 7 ft. below the ground surface. Ground
Jan 1, 2003
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Why Electronic Detonators Practical Demonstration with DSL2 & DSL3 SystemsBy Thierry Bernard, Phillipe Cappello, Jean Marc Laboz
"The main reasons of the emergence of electronic detonators are linked to:-Local urban development close to mining operation sites-Environment regulations"
Jan 1, 1995
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Simulations of Platform Loading from Explosions in Saturated SandBy William G. Szymczak
A set of experiments were conducted at the Aberdeen Proving Grounds [1] in which explosive charges were buried in saturated sand beneath a suspended rigid platform. The goal of these experiments was t
Jan 1, 2005
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Becoming Proactive With Lightning Safety And ExplosivesBy Zach Ellis, Dusty Fisher
Lightning is a major concern in the explosives industry. The enormous amount of energy delivered to the Earth from a single bolt of lightning is more than capable of detonating explosives. Although ex
Jan 1, 2015
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Test Study about the Law of the Action of Throw Blast Under Inclined boundary ConditionsBy Wang Hong Qu
This paper observes the shape of throw explosion crater its ejecta locus of internal medium and the process of distance along with slope's angle developing. It was discovered that initial velocity is
Jan 1, 1991
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Electronic Detonators Technology of the FutureBy Aloke Verma, R. Singh, S. Jana, C. Sawmliana, P. Pal Roy
On July 21, 2004, a trial blast using electronic detonators was conducted in India for the first time in an opencast mine at Pundi-E Quarry of TISCO, West Bokaro. Orica-IEL conducted the test using el
Jan 1, 2006