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Blasting Effects on Water WellsBy D T. Froedge
Before this study was started, literature was searched and cases of alleged water well damage were investigated. Occurrence of ground water in Appalachia is primarily in low yield, fractured, water ta
Jan 1, 1983
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Blasting for Avalanche Control Above Snoqualmie Pass and Chinook Pass in Washington StateBy Craig Wilbour, John Stimberis, Rob Gibson, Lee Redden
An avalanche is a snow slide. A simple explanation is that the snow on a slope will slide (avalanche) when the snow strength can no longer support its own weight. Snow avalanches happen when the load
Jan 1, 2004
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Blasting for Avalanche Control Above Snoqualmie Pass and Chinook Pass in Washington StateBy Craig Wilbour, John Stimberis, Rob Gibson, Lee Redden
Active avalanche control is the intentional triggering of avalanches while people are kept out of the hazard area. Explosives are frequently the most effective tool for triggering avalances. In a high
Jan 1, 2002
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Blasting for Installation of one of the World’s Largest In-Pit Crushers at an Open Cut Copper MineBy S. Mansfield, A. Sharma
At a large open cut copper mine, in pit crushing and conveying is used to shorten haul routes and minimise stockpiling of ore. This strategy decreases capital expenditure by reducing the number of hau
Jan 1, 2024
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Blasting for Mine to Mill OptimisationBy S S. Kanchibotla, S Morrell
In recent years there has been a growing recognition of the impact that mining practices have on the efficiency of mineral processing operations. Head grade, dilution, particle size distribution and t
Jan 1, 1999
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Blasting for Reduced Process Plant Costs at Argyle Diamond MineBy Smallnone P, Walker B
Mining of the AKI lamproite pipe at the Argyle Diamond Mine (ADM) commenced in 1985. Originally designed to mine ore at a rate of 3.6 Mt per annum, the project has gone through two major plant expan
Jan 1, 1998
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Blasting for Rescue ApplicationsBy John Norman
This paper will cover blasting techniques that are applicable to underground and other rescue that involves removing obstacles and breaking rock in close proximity to rescuers and subjects.
Feb 1, 2020
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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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Blasting for Wall Control and Stability using Electronic Detonators at the Bald Mountain Mine, NevadaBy Kurt Oakes, John Williams
Placer Dome, US operates the Bald Mountain Mine. The Bald Mountain Mine is a surface operation located in remote northwestern White Pine County in east-central Nevada, approximately midway between Elk
Jan 1, 2004
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Blasting Fume Prediction And Control As A Means Of Reducing Ventilation CostsBy E. De Souza, H. Heidrich
In underground operations the evaluation of blasting fume dilution times and the application of recirculation techniques require accurate determination of the concentration of toxic fumes produced by
Jan 1, 1993
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Blasting Harmonics and Controlling Peak Particle VelocityBy T J. Laing, A B. Richards, A J. Moore
Blastholes fired in a pattern with a constant initiation delay create a frequency in the ground vibration similar to that from a percussion instrument, such as a drum, in the air. A constant firing de
Aug 24, 2015
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Blasting Improvements at KCGMBlasting is a common practice in mining whereby solid rock is fractured, using explosives, to a more manageable size. The effectiveness of blasting influences a number of downstream activities such as
Jan 1, 2003
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Blasting Improvements by Using Most Active Rock Variations on BlastBy Alain Blanchier, Anne Charline Sauvage
Rock mass variations have a huge influence on explosives efficiency and on blasting results. Numerous blasting improvements could be gained by taking into account rock mass and its variations. However
Jan 1, 2004
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Blasting in a Cement KilnBy Ray Patterson
A planned modification to a cement kiln at the Holnam Portland Cement Plant near Florence, Colorado required the removal of a ring of cast-in-place (CIP) refractory lining. The CIP lining was approxim
Jan 1, 1999
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Blasting in an Urban EnvironmentBy Moore A. J
Blasting in mines in an urban environment can be conducted safely and within regulatory vibration limits by careful attention to detail and the application of correct techniques. Factors affecting b
Jan 1, 1997
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Blasting in AntarcticaBy Charlie Brumbaugh
Antarctica with its diverse conditions such as severe cold, high winds, rock and ice structure and limited explosives available posed many obstacles. This paper will give an overall view of the method
Jan 1, 2000
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Blasting in Challenging EnvironmentsBy Richard Goodridge, Stephen Thomsqn, S Rodgers, D Tunaley
The mining, quarry and construction industries are facing’new challenges everyday. These challenges can be imposed by economic objectives or through external factors such as extreme geological conditi
Jan 1, 1998
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Blasting In Close Proximity to Densely Populated CommunitiesBy Radhe Krishna, Mutale William Chanda, Timothy Mwale
Blasting as a process is the emplacement of industrial explosives into blast holes suitably located to a free surface and detonated. Every blast hole containing a certain amount of explosive charge un
Jan 1, 2015
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Blasting in Congested AreasBy David Miller, James Santoro
Blasting is often required in urbanized areas to allow for economical execution of construction, demolition, and mining. Several examples of operations that require blasting in built up areas include
Jan 1, 2000
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Blasting In Hong KongBy R L. Keller
Hong Kong has some of the most restrictive practices regarding blasting than any place in the world. Regulations regarding vibration limitations are 1 in/sec for structures and 0.5 in/sec (or even les
Jan 1, 1997