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Safe Blasting Near Important Civil Structures: A Case StudyBy T. N. Singh, Vasudev Singh
Most of the surface mines in India have drilling and blasting practice as excavation method. All the mines have to keep the blast vibration level below a certain limit. But when mining operation is ne
Jan 1, 2006
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Use of Basic Statistics for the Overlapping Timing Analysis of a Single Blast HoleBy Lifent Li, Jhon Silva-Castro
Since millisecond-delay detonators were first introduced, at least two variables, among others, have been more closely considered when timing a mining blast: the accuracy and the precision of the init
Jan 1, 2015
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Technical Review of Safe Blasting Design at Limited DistanceBy Agus Setiabudi
East Pit Wira II Project in South Kalimantan, Indonesia with a radius of <500 meters (1,640 ft) from residential has about 454,168 tonnes of coal reserves, with a total remaining reserves of 3,369,383
Jan 1, 2014
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Mitigation of Accelerations on Vehicles Subjected to Buried Mine LoadingBy Jarrod Bonsmann, Zachary T. Plitt
"A surge in mine related deaths in Middle Eastern conflicts over the past few years has prompted research into the mitigation of the impact on a blast loaded vehicle. In past military conflicts, it ha
Jan 1, 2016
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Reducing Blast Vibration Amplitudes Close-In to Structures of Sub-Standard ConstructionBy Enrique Munaretti, Cathy Aimone-Martin, Vitor Rosenhaim, Jair Koppe
Production blasts at one of Copelmi’s coal mine operations will be carried out 100 m (330 ft) from a neighborhood located in the town of Butiá, southern Brazil. Mine management is concerned about the
Jan 1, 2013
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Controlled Blasting for Grasberg Slope OptimizationBy Allen Kinney, P. T. Freeport
This paper presents the methodology for final wall-controlled blasting utilized at the Grasberg Mine. The resulting optimized slopes representa14%and17% increase to bench face angle (BFA) and inter-ra
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Safe and Reliable Remote Blasting with Electronic Initiation SystemsBy Riaan Van Wyk, Gys Landman
In today’s mining environment the use of radio communications in the form of two-way radios, cellular phones and even automated mining, form a vital part of the daily operations of a mining site. The
Jan 1, 2011
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The Safe Elimination of Buried Explosives Near Gillette, WyomingBy William H. Snyer, Victor A. Sterner
A cache of buried explosives was discovered by ICI Explosives, USA Inc. at one of their sites near Gillette, Wyoming. An intensive investigation conducted by ICI management indicated that nitroglyceri
Jan 1, 1997
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Tunnel Construction Efficiency and Vibration Control using Electronic Detonators: Focusing on the Contour Holes and Decking ModeBy Sami Kara, Yunseok Park, Seung-Joong Lee, Namsun Hwang, Michael Laing
This study conducts a comparative analysis of construction efficiency. In the first part we compared electronic and non-electric initiation systems, focusing on tunnel contour holes. Field blasting op
Jan 21, 2025
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Erratum: A Three Parameter Rock Fragmentation DistrubutionBy A T. Spathis
Corrections are given for “A three parameter rock fragmentation distribution” by A.T. Spathis (Measurement and Analysis of Blast Fragmentation, Workshop hosted by 10th International Symposium on Rock
Jan 1, 2013
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Dynamic Pressure Study to Minimize Misfires at Pueblo Viejo MineBy Alejandro Rosario, Ricardo Dumuihual, Guillermo Silva, be nito Danial Valde, Carlos Scherpenisse
A monitoring campaign to record dynamic pressures generated by detonation of a single blasthole was implemented at Barrick Gold´s Pueblo Viejo Open Pit mine (PVDC), located in the Dominican Republic.
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MS Initiation, a Possible Risk in Blasting Tall StructureBy Bob de Raadt
After a review of the general principles for blasting stacks, the stagnations of two stack demolitions are investigated. The author concludes and demonstrates that MS-delay blasting can be risky under
Jan 1, 1982
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A non-toxic, safe and reliable non-primary-explosives detonatorBy Marco Antonio Falquete
Conventional detonators and blasting caps make use, as igniters, of flame-shock-, andfriction-sensitive primary explosives, such as lead azide, lead styphnate, mercury fulminate, etc, most of them sev
Jan 1, 2007
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Prediction of blast induced ground vibration and its associated dominating frequency using a comprehensive support vector machine modelBy T. G. Sitharam, P. B. Choudhury
Prediction of ground vibration (peak particle velocity, PPV) and frequency is an important task in geoscience. Till date, many empirical equations are derived from conducting trial blasts in the mines
Jan 1, 2010
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Anisometric Blast Wave Propagation of Geometric Charges in Breaching ApplicationsBy Steve Linehan, John Toedter, Kelly Williams, Mark Herman, Laura Connor, Catherine E. Johnson
Minimum safe distance (MSD) calculations are used widely in military applications to determine safe standoff distances for breaching personnel. Accurate safe distances and an understanding of blast wa
Feb 6, 2023
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Journal: Haz Mat 101, PART 2 – Hazardous Material Placarding for Highway Transportation in Commerce of Explosives, Oxidizers, and Combustible LiquidsBy Tom Snyder, John Brulia
"The U. S. commercial explosives industry annually transports thousands of tons of hazardous materials (HM) in the form of explosives, oxidizers, and combustible liquids by highway in truck-tractor/tr
Jan 1, 2014
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A Reanalysis of Fragmentation Data from the Red Dog Mine - Part 2By Norman Paley, Finn Ouchterlony
Detailed fragmentation data for different blast delay timing tests at the Red Dog mine in Alaska are analyzed. This work is a continuation of previous work in which the crusher output was found to be
Jan 1, 2013
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Investigation of Blasting Fumes using Numerical SimulationBy Sunil Vytla, Akash Adhikari, Purushotham Tukkaraja
Blasting operations produces gases and fumes that may be toxic or non-toxic in nature. A detonation of commercial explosives such as ANFO, emulsion, and dynamite would ideally produce only nontoxic pr
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Analysis of Environmental Effects Induced by Cautious Blasting During the Excavation of Istanbul Subway ConstructionBy Ali Kahriman, Abdulkadir Karadogan, Alper Celtikci, Ahmet Varol, Ertugrul Kaya, Turgay Ozat
This paper presents analysis of environmental effects induced by cautious blasting during the construction of the Istanbul Subway 4 Levent - Ayazaga Darulsafaka Metro Tunnel Project carried out by the
Jan 1, 2011
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Magnitude 2.8 Earthquake Caused by 90 Pounds (41 kg) Per Delay! Not So FastBy 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