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Explosive Demolition of Coolign Towers in the NetherlandsBy B de Raadt
After discussing mechanisms of collapse for the explosive demolition of towers in general and cooling towers in particular, author comments upon a blasting operation in which four cooling towers were
Jan 1, 1978
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Control Blasting at Sherman MineBy Peter N. Calder, John N. Tuomi
The development of a successful control blasting program for an open pit iron mine in hard jointed rock is described. The objectives and mechanics of control blasting are discussed. Design and impleme
Jan 1, 1980
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To React Or Not To React? – Tis’a Fuelish Question!By Michael Wieland
Smoke/fume measurements from rapid transitory charge reactions are not wholly comparable with thermodynamic reaction code (TDRC) results, since quenched chemical reactions yield nonequilibrium concent
Jan 1, 2012
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Accurate Delay Detonation with Shock-TubeBy W. J. Birch, R. Farnfield
All shock-tube based initiation systems have a time lag relating to the propagation velocity of the shock-tube itself. This paper examines the exploitation of this inherent time lag to achieve delay b
Jan 1, 2009
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Achieving Non-Duplicated Firing Times in Multipledeck Priming of Individual Blast Holes in Surface Coal Mining Using Non-Electric Down-the-Hole Primers and Electric Surface InitiationBy James Ludwiczak
We are coming to an end of an era in Midwest surface coal mining. For many years, large tracts of coal lands were readily available for sale or lease to surface mine operators.
Jan 1, 1980
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Development of the Wireless Initiating System Using Microwave PowerBy Masanobu Morita, Koichi Kurokana, Kenji Hashimoto, Yoji Tasaki, Yukio Iida
"It has been the long desire of blasting engineer to realize the automatization of tunnelblasting to improve the safety and efficiency. As for bore hole drilling, the automatizationhas been achieved b
Jan 1, 1993
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Potential Blaster Liability under CERCLABy Charles A. Kliche
The Comprehensive Environmental Response, Compensation and Liability Act of 1980 (CERCLA) established a national program for responding to releases of hazardous substances into the environment. The fu
Jan 1, 1997
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Estimating Explosive Gas Pressure DistributionBy John N. Jr Edl
Geokinetics, Inc. has pioneered an in-situ oil shale retorting production process that provides the requisite void space for producing a permeable rubble bed, within the retort zone, by using the expl
Jan 1, 1983
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An Introduction to the Halo EffectBy Paul Worsey, Seokbin Lim
In many high explosive applications, the explosives are covered or clad by a metal. This metal cover may serve a variety of purposes including: 1) to protect and prevent the disturbing or misshaping o
Jan 1, 2005
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Assessment of Damage inRock Subjected to Explosive LoadingBy Dal Sun Kim, Michael K. McCarter
"Comminution (crushing and grinding) of rock materials is energy-intensive and expensive. Mucheffort has been directed to improve the efficiency of conventional milling practice, but relatively little
Jan 1, 1993
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Construction Blasting in Central OregonBy Paul Schmiesing, Matt Higgins
Central Oregon is a fast growing resort community centered in Bend, Oregon. Bend is bordered by the Cascade Mountains to the west and the high dessert to the east. Central Oregon is blanketed with lav
Jan 1, 2000
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Pre-Blast Surveys and the Importance of Photographic TechniqueBy James Ballard, Charles H. Dowding
Recent Office of Surface Mining regulations have called for pre-blast surveys of residences within one-half mile of blasting. Unless lighting effects and the multiple origins of cracks are recognized,
Jan 1, 1979
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How to Control Blast Vibrations in an UrbanBy R E. Langston, S M. Gazioglu
A preconstruction inventory program was conducted to determine the existing conditions of residential, non-residential and all other structures within 2,000 feet of the blasting limits for a highway e
Jan 1, 1980
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Influence of delay time accuracy on the fracture process in smooth blastingBy Yoshiharu Tanaka, Keita Morooka, Masaaki Yamamoto, Katsuhiko Kaneko
Smooth blasting is the standard method for underground rock excavation, to reduce over break and remaining rock damage. We already utilized the high accuracy of the electronic delay detonator to inves
Jan 1, 1998
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Blasting Practices at the Fording River OperationsBy Murray B. Lytle
The Fording River Operations of Fording Coal Ltd. in southeastern British Columbia is producing 45 million long tons of clean metallurgical coal for shipment to the Japanese steel industry on a 15 yea
Jan 1, 1978
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Fire Protection Provided by Detonator ContainersBy Lon D. Santis
The Code of Federal Regulations Title 30, Parts 56, 57, 75, and 77 require that detonators and explosives be separated by four inches of hardwood or equivalents when transported together in mines. Thi
Jan 1, 1997
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Electronic Blast Initiation – The Evolving Perception of Australian Mining OperationsBy Greg Wyartt
Although electronic detonators and blast initiation systems have been commercially available for several decades, uptake in the Australian mining industry has been very slow when compared to other glo
Jan 1, 2019
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Reducing Eyebrow Break Caused by Rock Blasting in Malmberget Mine (86e4ad65-d689-43b3-b42e-a83837151808)By Z X. Zhang
In sublevel caving mines, eyebrow break usually gives rise to lower ore recovery and worse safety in the field. Eyebrow break is caused mainly by two tensile stress waves: one from the front surface o
Jan 1, 2011
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A Consumer's Guide to Bulk Emulsions and Emulsion/ANFO BlendsBy Catharine L. VanOmmeren
Emulsion quality characteristics such as shelf life, handling, and sensitivity are critical to the end-user. It is therefore important that the consumer be prepared to ask his supplier specific questi
Jan 1, 1989
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Evaluation of Environmental Effects Induced by Blasting Around a Waste Water Tunnel Project in High-Urbanized Area in TurkeyBy Ali Kahriman
This paper presents the results of ground vibration and air blast measurements from tunnel blasting activities during the construction of the Beylerbeyi-Kucuksu waste water tunnel under a residential
Jan 1, 2006