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Cross Borehole Stress Wave Measurements in Underground CoalBy Michael S. Wieland
The stress waves generated during delay blasting in underground or surface mines not only fracture the surrounding coal, rock, or other strata, but also impact delayed charges remaining in neighboring
Jan 1, 1988
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Journal: Vibration and Seismograph Section / Use of GPS and GPS Exchange Format Files in PennsylvaniaBy Rick Lamkie
When investigating citizen complaints about blast vibration and airblast, it is important to be able to establish the spatial relationships between blasts, blasting seismographs monitoring the events,
Jan 1, 2008
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Rockbreaking Characteristics of Various Mining Explosives in Small Diameter HolesBy J R. Brinkmann
The South African gold mining industry presently uses four different types of explosives in stope blasting. There is general agreement that the type of explosive has considerable effect on Important b
Jan 1, 1989
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Fines Reduction Program at the Canadian Salt CompanyBy John M. Bolger, Keith E. McMaster
Excessive salt fines are undesirable in underground salt mining as they are considered a costly waste byproduct. This paper describes an extensive explosive application program conducted at The Canadi
Jan 1, 1996
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The Influence of Time Error of Electric Detonators on the Amplitude of Vibration Generated by BlastingBy Kis M
The purpose of seismic control of blasting is to indicate the vibration magnitude or to eliminate the occurrence of vibration damage caused by blasting. At the Mining Research Institute in Hungary, a
Jan 1, 1979
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House Response to Low Frequency Ground Vibrations from Coal Mine Overburden Blasting: a Technical UpdateBy Steven V. Crum, Willard E. Pierce
Concern has been raised about the adequacy of current regulatory guidelines designed to protect homes from unwanted blast damage due to low frequency ground vibrations; in particular those with predom
Jan 1, 1995
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HDAN Emulsion Blend Implementation Results in Open Pit Coal MineBy J. P. Remi Proulx, Juan Camilo Gonzalez T., Winston B. Wilches
Alabama USA based Drummond Ltd. operates two open pit mines in the Cesar Coal Basin of Northern Colombia. The mines produce a combined total of over 25 million tons (22.7 Mt) of thermal coal per year
Jan 1, 2015
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Development of an Urban Blasting Ordinance for the City of Henderson, NVBy Cathy Aimone-Martin
The City of Henderson, Nevada is experiencing extraordinary population growth. Some residential development requires blasting to be conducted at close proximities to high-value houses. Blastingrelated
Jan 1, 2007
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Swedish Cautious Blast Excavation at the CSM/ONWI Test Site in ColoradoBy Roger Holmberg, William Hustrulid
Swedish cautious blasting techniques were used to excavate a room at the CSM Experimental Mine in Idaho Springs, Colorado,as part of a ONWI/DOE sponsored nuclear waste disposal research program.
Jan 1, 1981
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Pneumatic Loading of ANFO UndergroundBy J J. F Smith
The application of pneumatically loaded ANFO for underground mining has continued to increase year by year since the technique was first developed and introduced underground during the early 1960's. I
Jan 1, 1982
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Underwater Plug Blast at Manic-C Hydro-Electric ProjectBy P Albert
A wedge-shaped underwater rock plug has to be blasted in order to tap the reservoir and furnish water to a new underground powerhouse at Manicouagan-5. The paper deals with the design and engineering
Jan 1, 1984
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Development of a Blasting Mat TestBy Paul Worsey, Matthew K. Coy
New blasting mat designs are currently tested in the field on actual blasting jobs and only undergo qualitative rather than quantitative assessment. The majority of matted blasting occurs in trenching
Jan 1, 2015
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High Speed Photography of Stope Blasting in South African Gold MinesBy P A. Gibson, J R. Brinkmann
The South African gold mining industry fires approximately 800 000 sloping blastholes daily. A programme aimed at characterizing the stope blasting process is underway in order to identify areas for i
Jan 1, 1985
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Snap, Slap & Shoot - A Possible Cause for Premature Ignition of Shock TubeBy Roger Holmberg, Dick Salomonsson
Nitro Nobel (the company was acquired by Dyno Nobel in 1986) originally developed non-electric initiation systems. These system were based on the 1967 invention of the shock tube fuse by Per-Anders Pe
Jan 1, 2002
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Intelligent Information Management for Improved Blasting Practice and Environmental ComplianceBy W. J. Birch
The recording of information is critical to the blasting process, whether it be for planning purposes, statutory requirements or environmental compliance. The review and analysis of past data can play
Jan 1, 2002
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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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Application of Full-Face Round by the Sequential Blasting Machine in Tunnel ExcavationsBy Young-Dong Cho, Han-uk Lim, Bok-Ki Park, Sang-Eun Lee
Many methods and techniques have been developed to reduce ground vibrations. Some of them are an adoption of electric millisecond detonators with a sequential blasting machine and an improvement of in
Jan 1, 1995
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A Study on the Correlation Between Delay Time and FragmentationBy Yeon-Ho Jin, Eui-Haeng Heo, Yun-Seok Park, Sung-Oong Choi, Hyung-Dong Min, Min-Su Jeong, Seung-Joong Lee
As rock fragmentation in bench blasting can affect the following process such as loading, hauling and crushing, its good control is essential for assessment of blasting efficiency and production cost.
Jan 1, 2015
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Explosive Induced Damage Potential to Earthfill Dams and EmbankmentsBy D O. Doehring, W A. Charlie, W A. Lewis
The detonation of explosive charges releases large quantities of energy that can produce rock and soil deformations far from the detonation point Extensive data are available on blasting in general an
Jan 1, 1987
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High Power Energy CastingBy R W. Givens
This paper presents blast casting design variables that have been developed and are currently being used at the High Power Energy mine in West Virginia. The shot specifications are summarized in Table
Jan 1, 1988