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Wall Control Blasting Practices at Kisladag Gold MineBy Ekin Güngor, Berkant Ozdemir, Erkan Bayrak, Serdar Ergün, Sedat Esen
"This paper presents the final wall blasting practices at Eldorado Kisladag Gold Mine in Turkey. Benchmark and improved wall control designs were explained in detail. Kisladag Mine has been implementi
Jan 1, 2017
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Electronic Initiation Applications at Barrick Goldstrike's Meikle MineBy Ray Slavin, Remi Proulx
The Meikle Mine is a mature underground gold mine utilizing primary and secondary longhole open stoping method with delayed backfill. Combined production with the newly developed Rodeo Mine is 4700 to
Jan 1, 2004
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Perimeter Control Utilising Electronic DetonatorsBy John Wall
The use of electronic detonators in civil tunnelling applications, to reduce vibration is small firings has been successfully utilised for a number of years. As part of the mining industry’s commitmen
Jan 1, 2012
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Responsible Blasting: Strategies for Community Impact MitigationBy César Ugaz, Jorge Cardenas
Mitigating the vibrations resulting from a blasting rocks is one of the most common challenges that Peruvian mining has, since if this impact is not mitigated it can generate discomfort and altercatio
Jan 26, 2026
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Utilization of Aerial Drones to Optimize Blast and Stockpile FragmentationBy Ran Tamir
"This document introduces the use of drone generated aerial photography to collect and analyze fragmentation data for both muck piles and post crusher stockpiles in order to support the continuousimpr
Jan 1, 2017
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Some Aspects of Design and Evaluation of Perimeter Control Blasting in Fractured and Weathered RockBy Andrew F. McKown
Overbreak and damage to rock walls at the perimeter of rock excavation can lead to safety problems due to rock falls and additional costs due to a] extra mucking, b] extra concrete or shotcrete to bac
Jan 1, 1984
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Non-Ideal Blasting for Ideal Grinding - Part TwoBy Jack Eloranta
Building on previous work, this paper expands the template for modeling the economic relationship between blasting and grinding. The actual efficacy of various blasting enhancements is not addressed,
Jan 1, 2014
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Cost Reduction Using Electronic Delay Detonator in Brazailian CVRD MinesBy M. L. Mendes, J. Q. Nojiri, S. C. Botelho, A. P. Campanha
In February 28, 2001 JOULE coordinated the first tests with an electronic detonator in South America at an iron ore operation - ITABIRA MINES from the Brazilian COMPANHIA VALE DO RIO DOCE (CVRD) - the
Jan 1, 2002
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Pre-Bench Blasting Design Based on Risk Analysis on a QuarryBy Gungor Tuncer, Ali Kahriman, Umit Ozer, Abdul Karadogan, Mehmet Aksoy, Ertugrul Kaya, Deniz Adiguzel
This research was performed on the quarry that will be opened to produce aggregates and rock filling material at Catalagzi region at Zonguldak providence. Excavations will be done by drilling and blas
Jan 1, 2009
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Occidental's Resorts 7 and 8 Blasting Design and ResultsBy Thomas E. Ricketts
Occidental Oil Shale, Inc. constructed two commercial-sized modified in situ (MIS) retorts, Retorts 7 and 8, at its Logan Wash Oil Shale Mine in February and April 1981, respectively. One of the prima
Jan 1, 1984
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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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Improving Productivity in Pillar Blasting – HZL, Sindesar Khurd MineBy Deepankar Das, Gulshan Kumar Sadhwani, Jyoti Prakash Sahoo
Sindesar Khurd Mine (SKM), the largest underground mine in the Hindustan Zinc Limited portfolio, is located approximately 60 kilometers (37 miles) north of Udaipur. In the 2018 financial year SKM achi
Jan 1, 2019
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Violence Factor – The New Tool for Blast Performance AnalysisBy Dr. Calvin J. Konya, Anthony Konya
Blast violence has always been a criteria that has been analyzed without a quantitative approach relying on opinions of those viewing the blast and oftentimes does not transfer between open-pit mines,
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How to Achieve 100% of Advance in TunnelBy Alan Diaz Butron, Eng. Thierry Bernard
"In tunnel blasting the most challenging objective is definitively obtaining the maximum advanceassociated to a minimum overbreak. Achieving 100% of advance with no overbreak is the targetchallenge by
Jan 1, 2017
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Vibration Monitoring Using In-house Developed Devices – A Taylor’s ApproachBy Auã Kiahla, Tomi Kouvonen, Vinicius Miranda
Through numerical mathematical processing (Taylor’s approach and numerical derivation) the original data supplied by the accelerometer’s sensors was transformed into velocity and, after the data minin
Feb 1, 2020
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Developing Controlled Blasting Methods For Excavation of Rock and Concrete Near Critical StructuresBy Gordon F. Revey
In construction and mining work, situations occasionally occur where hard rock or concrete must be excavated at locations near critical structures or utilities. Fearing damage from blasting, contracto
Jan 1, 2002
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Flyrock: A Continuing Blast Safety ThreatBy Harry Verakis
Flyrock is the second leading cause of all blasting related injuries in surface coal, metal and nonmetal mining operations. It is also a primary cause of property damage, monetary losses and “near mis
Jan 1, 2011
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Increasing El Toro Mining Productivity through the Application of Massive Blasting Techniques while Reducing Environmental Impact on Neighboring CommunitiesBy César Ugaz Castañeda, Paulo Fernández Alvarado, Richard Sotomayor Oblitas, Rocke Enríquez
Mina El toro has been making substantial changes in its operation to improve its social impact and productivity. Because of the use of gasified emulsions and electronic initiation system, it was possi
Feb 1, 2020
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Retardation of an Underground Coal Fire in an Industrial Area by Means of BlastingBy Claude Cunningham
Late in 1982 a fire began in the shallow, abandoned workings of the Uitkyk Colliery near Witbank, South Africa. Urgent measures had to be taken to quench the fire, before the surface caving it caused
Jan 1, 1984
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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