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An Analysis of Dragline Applications and Performances in Deep Stripping ConditionsBy Richard Curtis
Optimum Colliery is presently experiencing a shortfall of stripping capacity in order to meet its production requirements. Due to the long dragline procurement times, several alternative stripping met
Jan 1, 1990
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Vibrating Wire Gages Watch Dynamical Structural Integrity During BlastingBy A. Feldman
Measuring dynamic effects on existing structures such as dams and bridges during earthquakes or blasting is frequently done using strong motion detectors. However, a more comprehensive dynamic structu
Jan 1, 2006
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How Electronics Initiation has Changed the Rules of Blast DesignBy Thierry Bernard
For many years now electronic initiation has brought the time parameter to the centre of blast designs forever. Although this parameter existed before the era of electronic detonators, Blasting engine
Jan 1, 2005
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Blasting Mitigation Measures Used to Control a Highwall Failure RiskBy Jean-Sébastien Lambert, Joseph Kabuya, Richard Simon
Managing a highwall failure risk in an open pit mine by controlling and mitigating the impact of vibrations produced by blasting operations is key to achieving safe and cost-effective operations. The
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Presplitting Techniques and Field ControlsThe objective in controlled blasting is to reduce overbreak to control the final pit wall slope, shaft, drift ditch, bench, etc. to the final planned excavation limit. The six main types of controlled
Jan 1, 1992
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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 Measure Detonation Front Curvature of Emulsion ExplosivesBy Nikolaos Petropoulos, Daniel Johansson, Håkan Schunnesson
The optimization of the explosive performance is of great importance since blasting is extensively used in civil projects and mining industry. An improved understanding of how the energy from the deto
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The EU Project “I.C.E.A. Identification Colors of Explosives & Blasting Accessories”By Gennaro Di Lauro, Laura Meraviglia, Demostenes Efstratiadis, Danilo Coppe
This paper presentation regards the European Union’s project “I.C.E.A. - Identification Colors of Explosives and Blasting Accessories (Agreement number – HOME/2010/ISEC/AG/071 – 30 – CE – 0447240/00-1
Jan 1, 2015
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Florida Mining Blast Vibration Study Part 4: Conclusions and RecommendationsBy Tristan Worsey, Nathan Rouse
Florida legislature allocated funding for the Florida State Fire Marshal to review the applicability of the United States Bureau of Mines (USBM) Report of Investigations (RI) 8507 blast vibration limi
Jan 1, 2019
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Low Frequency Vibrations Produced by Coal Mine Blasting and their Impact on StructuresBy B Mohanty, M P. Roy, P K. Singh
"The measured response of residential structures is a critical indicator of troublesomeor potentially damaging ground vibrations. A study was conducted to evaluate theresponse of structures situated i
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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Updates in the Determination of Dynamic Pressure TestsBy Alejandro Ferrada Vergara
Most blasting techniques that are designed to improve fragmentation and subsequently improve ore work index to downstream comminution processes, apply powder or energy factor increases, either by stre
Jan 1, 2016
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Modeling Effect of Delay Scatter on Peak Particle Velocity of Blast Vibration Using a Multiple Seed Waveform Vibration ModelBy R Yang, M Lownds
This paper reports studies showing the effects of delay scatter on the peak particle velocity (PPV) of blast vibration using a multiple seed wave (MSW) vibration model developed in recent years. The c
Jan 1, 2011
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Notes on Detonation PhysicsBy P D. Katsabanis
According to Persson(1) steady state detonation along a cylindrical charge can be regarded as a self propagating process in which the axial compressive effect of the shock front discontinuity changes
Jan 1, 1989
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An Analytical Approach For Diagnosing and Solving Blasting ComplaintsBy Douglas Rudenko
Have you ever had a neighbor complain about a blast one day, but says the next day’s blast was better, even though the Peak Particle Velocity (PPV) increased? How about neighbors that complain about a
Jan 1, 2002
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Investigation into Monitoring of Initiator PerformanceBy Charles Deacon
The mining industry is constantly taking greater cognisance of their operating costs as a strategy to counter the effects of falling commodity prices. As a result, optimal operating efficiency is more
Jan 1, 2000
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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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Underwater Explosions Part 3. Effects of the RDX Increments to the Shock, Gas Heave and Total Energy Values of TNTBy M. Hagfors
Underwater explosions have been used several decades for the determination energy content of explosives. It’s the only test method by which shock and gas heave energy values can be determined separate
Jan 1, 2006
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Microphone Height Effects on Blast-Induces Air OverpressureBy Randall M. Wheeler, Kenneth K. Eltschlager
Blasting Seismographs use microphones to measure air overpressure from blasting. The microphone height above the ground has been the object of some controversy. The current ISEE “Field Practice Guidel
Jan 1, 2005
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Blast Designs and Diagnostics Using Portable, Solid State, High-Speed Videography SystemsBy Bruce Vandenberg, R. Frank Chiappetta, John Foley
Recent advances in solid-state, field portable, fast framing compact video camera systems and PC based frame capture hardware now allow blast imaging up to 1000 frames per second. Up to 4.1 seconds of
Jan 1, 2000