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Blasting the Coleson Cove Poer Plant Cooling Water Outfall PlugThis is the story of a blast - not a large blast by todays standards as it only involved a total of approximately 50 cubic yards of rock. Nor did this blast involve any new or revolutionary blasting t
Jan 1, 1976
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The Development and Testing of a New Mechanical Stemming AidBy Paul Worsey, Terry Nixon
The development and testing of a simple mechanical stemming aid (Patents pending) resulting from a Joint venture by Incubator Technologies Inc. and the University of Missouri-Rolla and funded by the U
Jan 1, 1988
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Considerations Affecting the Selection and Use of Modern Chemical ExplosivesBy Donald J. Westmaas, Fred C. Drury
The factors affecting the selection and use of exploisves have changed radically in the past three decades. The objective of this paper is to point out considerations which should now be employed by t
Jan 1, 1978
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Journal: 100 Years / THE ST. MARY’S PARK TUNNEL, N.Y.C. & H.R.R.R.By Robert Hopler
As a part of the depression and rectification work on the Port Morris branch of the Harlem Division of the New York Central & Hudson River Railroad, a short tunnel is being driven under St. Mary’s Par
Jan 1, 2006
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Calorimetric Determination of the Heat of Detonation of Commercial ExplosivesBy Q Liu, P D. Katsabanis
The energy output of crushed AN/FO, crushed AN/FO mixed with Aluminum (5%, 6.4% and 9.4% A1 by mass) and a commercial emulsion explosive has been measured using a detonation calorimeter. The charges h
Jan 1, 1993
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Journal: 100 Years / A Trip Through The Anthracite Coal MinesBy Robert Hopler
RBH Note: in 1913 black powder was still dominant as a coal-mining explosive, but permissible explosives were making some slight headway. For example, in 1902 there were only 11,300 pounds of permissi
Jan 1, 2014
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The Utilization of Personal Computers for Blast Design and AnalysisBy John L. Floyd
A personal computer is a valuable tool for blast design and analysis. Programs designed for the personal computer, such as the electronic spreadsheet, can be used for a wide range of applications. The
Jan 1, 1987
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The Construction and Testing of a Polycarbonate Safe Haven WallBy Braden T. Lusk, Rex A. Meyr, Kyle A. Perry
Following three major mining accidents in 2006, the MINER Act of 2006 was enacted by MSHA and required every underground coal mine to install refuge alternatives to help prevent future fatalities of t
Jan 1, 2014
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Busting Myths at the Energetic Materials Research and Testing CenterBy G. Walsh, L. Wolkovitch, A. Savage, V. Romero, T. Zimmerly, G. Imahara, J. Hyneman, K. Byron, D Tapster, S. Belleci, J. Metzger, M. Stanley
Testing was conducted at the Energetic Materials Research and Testing Center for the MythBusters on three separate occasions. This testing included (1) an experiment designed to create diamond from gr
Jan 1, 2010
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Fragmentation Control Through the Attenuation of Explosively Produced Shock WavesBy S B. Richardson, N T. Moxon, A C. Torrance
In many mining situations the energy released by an explosive is far too high and results in over fragmentation and excessive damage to the surrounding strata. Laboratory experiments have demonstrated
Jan 1, 1989
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Running a Drill Program that Supports the Mission of BlastingBy William D. Hissem
While much technology has been developed and brought to bear in the area of blasting applications, the foundation work required for success in the muck pile begins with the drilling program.
Jan 1, 1997
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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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Explosive Freeze Pipe Cutting at the McArthur River Uranium MineBy Dale Preece, Mike Stern, Steve Piercey, Ayman Tawadrous, GC Zhao
The McArthur River uranium mine in Saskatchewan, Canada is the world’s largest high-grade uranium mine. It has employed a freeze-wall system consisting of multiple freeze pipes to control the large qu
Jan 1, 2011
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The Impact of Blasting on Excavation Design - A Geomechanics ApproachBy Cameron McKenzie, John Heilig, Patrick Andrieux, Andree Drolet
It is widely accepted that both underground and surface blasting operations can de-stabilise excavations to the point where it can threaten the feasibility of mining through personnel safety or OK dil
Jan 1, 1994
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Strip Mine Blasting in the Coal Fields of Western KentuckyBy James T. Ludwiczak
The state of Kentucky uses more explosives than any other state in the country. The majority of these explosives are used in underground and strip mines in the well-known coal fields of eastern and we
Jan 1, 1978
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Measuring Blast Induced Damage by Applying the MASW Geophysical MethodBy Charles Zdazinsky
Many blasting applications in the mining industry demand that the hard rock being blasted remains structurally competent. For example, pre-splitting is a common technique to reduce fracturing, and ope
Jan 1, 2011
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Blasting in the New Mellinnium: Reactive Versus Proactive SafetyYou DecideBy Steve Dillingham
Change occurs all of the time. In fact, it’s fair to say that change is a constant. Sometimes the change is inconsequential, but sometimes the change impacts us d i rectly and severely. Take regulatio
Jan 1, 2003
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Techniques of Precision Blasting in the Excavation of Drilled PiersBy George Young Mosteller
This paper is summary of the practical solutions developed in the excavation of drilled piers (caissons) at GPCo's Plant Scherer, Juliette, GA. Plant Scherer is a 3,245 Megawatt Fossil Fuel Powerhouse
Jan 1, 1980
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Blasting for the Enhanced Western Groundwater Extraction System - Modern LandfillBy Jay Smerekanicz, Florin: Pedersen Gheorghiu, Alan Cameron
In order to expand the capacity of Modern Landtill, a groundwater extraction system consisting of a linear system of pumping wells over 2,700 feet long had to be replaced. The new system would be cove
Jan 1, 2001
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Factors Driving Continuous Blasting Improvement At The Lafarge Ravena PlantBy David Lilly, Robert Ethier, David Bremer
The Lafarge Ravena Cement Plant in Ravena, New York demonstrated continuous and extraordinary improvement in productivity during the past several years. The factors driving continuous improvement at t
Jan 1, 2007