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Monitoring of Dynamic Borehole PressuresBy B. Papilon
Dynamic pressures during blasting can affect performances of both electronic and non-electronic detonators. Boreholes can develop tremendous amount of pressures during blasting. The effect of such ele
Jan 1, 2013
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Modifying Blasting Parameters: Reducing Vibration while Maintaining Maximum Delay ChargeBy Blenda Lopes, Rodolfo Matias, Vagner Paixão, Vinicius Leão VALE, Edivarde Sousa
Seismography is an extremely important subject in the context of rock blasting, especially in the current scenario, which involves the need for increased controls due to the growth of urban areas near
Jan 26, 2026
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Regulating the Velocity of Detonation of ANFO Utilizing Blends of Non-Explosive MaterialsBy Michael E. Curtis
This paper outlines a study performed to analyze the advantages of utilizing a blasting agent with a velocity of detonation that is 1.3 to 1.4 times the P-wave velocity of sedimentary shales and sands
Jan 1, 1997
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The Thermal Basis for Explosive Decomposition with Heat due to External heating or reactive groundBy Alastair Torrance, Gary Cavanough
Over the past two years a research project has been performed on reactive and hot ground. A key finding is that host materials including carbonates and coal are inhibitors to the reaction of sulphide
Jan 21, 2025
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Evaluation of Emergent Electronic Detonators and Modern Non-Electric Shocktube Detonators AccuracyBy J Silva Castro, W C. Wedding, B T. Lusk, J Calnan, E G. Morris
The emergence of electronic detonators for use in production mine blasting has enabled mining professionals to rethink the traditional blast design methodologies that pertain to timing. In many ways,
Jan 1, 2012
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Burden Profiling: Do You Measure What You Think You Do?By Greg Shapiro, Paul Dr. Worsey
Mining, quarry, and construction blasts are becoming more and more dependent on bench profiling. The use of accurate profiling gives the blaster better data for the most efficient blast results. So,
Jan 1, 2019
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Highwall Damage Control Using Presplitting with Low-Density ExplosivesBy Virgil J. Stachura, Calvin L. Cumerlato
The U. S. Bureau of Mines is conducting research on blasting methods that reduce highwall overbreak and the associated rockfall hazards. This paper presents the results of tests using a low-density wa
Jan 1, 1995
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Close-In Shockwave Characteristics In Saturated SandBy L C. Taylor, H U. Lesiste
This paper provides a preliminary description of the properties of the output pressure (shock) wave of an end initiated, cylindrical charge of low height to diameter ratio in saturated sand. The prope
Jan 1, 2013
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Vertical Drop – the Challenge of Transporting Explosives UndergroundBy Ayman Tawadrous, Hendrik Botha, Simon St J Tose
The early miners and their mules always had the challenge of transporting unstable dynamite underground. The modern pumpable explosives, whilst far safer, still present a major logistics challenge for
Jan 21, 2025
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Kanalku Falls Blasting for Fish Habitat Improvement in AlaskaBy Catherine T. Aimone-Martin, Kristen Kolden
In August of 2013 the USDA Forest Service (USFS) blasted bedrock at the base of a waterfall in Kanalku Creek within the Kootznoowoo Wilderness Area on Admiralty Island in the Tongass National Forest l
Jan 1, 2015
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Blasting in TunnelingBy Midori Sakamoto, Nobuaki Sakuma, Tsuyoshi Murashita
Recently, tunnel blasting works near the residential area and existing building are increasing and environmental problems caused by vibration have become serious public concern. In order to solve thes
Jan 1, 1998
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Journal: Kaiser Plant Demolition / Smokestack Demolition at port of Tacoma, WashingtonBy Walt Meglasson
The Kaiser Aluminum Company Smelter, one of several in the Pacific Northwest, was built in 1942 and operated by the Olin Company during World War II and then purchased by Kaiser Aluminum after the war
Jan 1, 2008
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Full Wall Control Blasting OptimizationBy John Floyd, Maria Rocha, Benjamin Cebrian
Wall control blasting is needed in most metal mining operations in terms of increasing mineral reserves and assuring the safety of the operation. This type of blasting has the goal to achieve a clean,
Jan 1, 2018
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Effect of Blasting Vibrations from Deck Blasts on Pit Wall Stability (Blasting and Fragmentation Vol. 11, No. 1, 2017)By B Mohanty, A Siamaki, K Esmaeili
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 a
Jan 1, 2017
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Regression Model for Surface Vibrations from Underground OperationsBy Tristan Worsey, Nathan Rouse, Daykin Schnell
The authors were retained by a proposed underground metals mine operation to evaluate the potential blast vibration amplitudes that could be generated at surface structures above the proposed mine. Li
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Underground Longhole Blasting near Large-diameter Booster FansBy Norm Disley, Kingsley Hortin, Gertjan Bekkers
As part of the expansion of the Kidd Creek Mine to 2,682 meters (8800 feet) below surface, two largediameter 3000kW (4000HP) booster fans were installed at the 6000 level. Shortly after commissioning
Jan 1, 2008
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Tunneling in Thinly Foliated Rockmass ConditionsBy G. C. Naveen
Punatsangchu Hydroelectric Project Authority is constructing 1020 MW underground hydroelectric project in Bhutan. The project envisages construction of concrete dam, Desilting Chamber, Head Race Tunne
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Utilising a Dual Belly Auger MPU to Manufacture Bulked Inhibited ExplosivesBy Jason Rock, Rob Thompson, Lee Julian
Reactive ground is ground that undergoes a spontaneous exothermic reaction after it comes into contact with nitrates. This is commonly caused by inert rock hosting sulphide minerals, such as pyrites t
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Oversize Quantification Using Drone-Based Fragmentation AnalysisBy Nolan Eckroade
The demand for blast optimization within the quarrying industry calls for more effective, faster and safer methods of quantification of blast performance. Drones provide the ability to safely and quic
Jan 1, 2018
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Bingham Canyon Mine-Blasting Through and Next to Active UndergroundBy Robert Cefalo
Drill and Blast Engineer Abstract In 2019, the Bingham Canyon Mine, owned by Rio Tinto Kennecott Utah Copper Company, mined through the active underground that dewaters the pit. The active underground