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New Firing Method for Underwater Blasting (Remote-Controlled Blasting System by Electromagnetic Firing Method)
By Takeo Ueda, Masashi Nakano
We have developed a new blasting system remotely controlled by an electromagnetic firing method, which has proved advantageously applicable to sites where rapid tidal current or deep water may cause s
Jan 1, 1983
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Field Investigations into Blast Design Parameters of Highly Jointed Rockmass of Overburden: A Case Study of Large Opencast Coalmine (India)
By V R. Sastry, D P. Singh, N R. Thote
Rock parameters which are uncontrollable impose restrictions on the procurement of desirable fragmentation. Blast design parameters which are controllable prove to be important tool in blasting operat
Jan 1, 1995
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Controlled Explosive Fracturing
By Ulrich Leiste
If the iron ore loss is 15% in the process of mining, the total iron ore loss in the world will be about 461 million tons, this is equal to the total production of 230 iron ore mines each of which pro
Jan 1, 2014
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A Case Study Examination of Two Blast Rounds at a Nevada Gold Mine
By Joel Warneke, Cristian Caceres, Ed Mchugh
NIOSH researchers collected basic data from two blast rounds at the SSX-Steer Mine as a component of a larger study on controlled blasting, the goal of which is to reduce injuries from falling rocks i
Jan 1, 2008
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Relating Horsepower to Drilling Productivity
By Brian Wingfield, Rick Givens, Greg Williams
Many technological advancements have been made in explosive products and applications over the last 15 years resulting in productivity and cost gains. However, the application of total energy (engine
Jan 1, 1996
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Techniques of Precision Blasting in the Excavation of Drilled Piers
By 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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Benchmarking Drill and Blast Compliance to Design, A Case Study
By Alan Tordoir, Mark Roberts
The drill and blast process is a critical function within the production cycle which significantly impacts the ability of an operation to effectively meet its safety and production targets. Acknowledg
Jan 1, 2019
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Lake Dorothy, Alaska, Underwater Tunnel Piercing - The Norwegian Way
By Jan Mehren, Arild Neby
Underwater Tunnel Piercing or Lake Tap, often also called the Norwegian Method, will in many projects be an important part of the hydro electric development scheme. The very last blasting round in the
Jan 1, 2009
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Seed Wave Modeling to Natural Caves Protection in Mining Operations
By Alejandro Rosario, Ricardo González
The restrictions imposed by the Brazilian environmental legislation regarding natural caves lead to a block of substantial amount of mineral reserves. Mining activities can released caves, as long as
Jan 1, 2019
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Seismic Modelling Control Of Blasts In A Nuclear Power Plant
By Alain Blanchier, Pascal Bernasconi
Blasting operations took place on Channel coast NW of France to extend Flamanville Nuclear Power Plant (EPR new generation). The closest operating reactor building was monitored by a 24 remote vibrati
Jan 1, 2008
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Pressures Acting on Targets Subjected to Explosive Loading
By Leslie Taylor, Uli Leiste
In this paper, results from small scale testing conducted to determine pressure time profi les acting on a plate (taken to represent the bottom of a vehicle) at any given distance from the center of t
Jan 1, 2008
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Shape Charge Effectiveness
By Daniel Castelo, Ben Potter
This paper will discuss the most efficient and effective way to use shape charges when considering standoff distances and the amount of an explosive to be used. For each shape charge test that was per
Jan 1, 2011
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New Development of Gassed Emulsion Explosive for Cost Optimization and Environmental Control
By Yessica Idrogo, Omar Gómez, Francisco Pérez, Eduardo Yrigoyen
Rock blasting is one of the most important operations in the mining cycle value chain, requiring optimized explosives mixtures to get good results. A new and better strategy, and that which is discuss
Jan 1, 2019
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Detection of Geological Features using Aerial Image Analysis and Machine Learning
By Ankit Jha, Sudarshan Rajagopal, Purushotham Tukkaraja
Geologic structures are one of the crucial parameters in blast design. Structural geology and rock properties influence drilling patterns, blast layout, and initiation systems. A comprehensive underst
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Demonstrated Improved Fragmentation and Optimized Explosive Distribution by Using Air Decks created with Stemming Plugs
By Alejandro Ferrada Vergara, María Jesús Barros Godoy
Reducing costs while maintaining productivity and achieving good results is a constant challenge in mining operations, especially in the drilling and blasting stage, since a bad blast can affect produ
Jan 21, 2025
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Blast Wave Propagation in Underground Mines
By Richard J. Mainiero, Eric S. Weiss
This project investigates the behavior of blast waves from the detonation of high explosives in an underground mine. A series of explosive tests was conducted in the underground and surface facilities
Jan 1, 1995
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Mine Expansion Towards Blast Sensitive Areas
By Scott G. Giltner, Alex Schwenk
An iron operation sought to extend the life of the mine by conducting a major pit pushback in an area close to several public structures and the neighboring town. The result of the pushback would make
Jan 21, 2025
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Design Criteria for In-Situ Mining of Hard Rock Ore Deposits
By M E. Hanson, K Chong, R H. Jacobson, S C. Way
To create conditions for economic rates of mineral recovery in a deep, hard rock mass, enhancement of naturally occurring permeability is necessary, and may be achieved through explosives detonated in
Jan 1, 1983
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Effect of Blasting Vibrations from Deck Blasts on Pit Wall Stability
"Large scale open pit mining and quarrying operations dictate safe and reliable pit wall stability. The current approach of employing the particle velocity-scaled charge distance approach to estimate
Jan 1, 2017
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Tennessee's Largest Pipe Installation
By James R. Houston, Wendel Clay Chaffin, John Loviza
During the spring and summer of 1993 the largest pipeline in Tennessee was installed as part of the upgrading of Nashville's sewage needs through the year 2035. This new 3.3 million dollar outfall pro
Jan 1, 1995