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A Kinematic Approach for Blast ModelingBy Ruilin Yang
Kinematic approach of blast modeling refers to using the velocity, strain, or displacement as controlling parameters to model blasting, rather than the stress and the material constitutive relations.
Feb 1, 2020
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Damage to Rock: Near Field Seismic Models RevisitedBy Santiago Gómez, Pablo Segarra, José A. Sanchidrián
In this paper, differences between the industry-standard Holmberg-Persson (H-P) approach and a semi-analytical vibration prediction model called full-field solution (FFS) are analized. The analysis is
Feb 1, 2020
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Instrumentation of a Structure for comparison of regulations worldwide - Vibration Monitoring Standards Connected to the use of Explosives in Different Countries, Part IIBy Thierry Bernhard, Johan Finsteen, Charles Dowding, Mathias Jern
To bring some clarity to how different standards relate to each other a project was initiated within the European Federation of Explosives Engineers (EFEE). The first part of the project was a literat
Feb 1, 2020
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Simulations of Full-scale Bench Blasts using FDM (Fracture Density Model)By Dale S. Preece
A new three dimensional (3D) mechanistic model of fragmentation, called the Fracture Density Model (FDM) is used to simulate full-scale bench blasts at the Bararp dimensional stone quarry in Sweden. T
Feb 1, 2020
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Predictive Modelling for Equipment Blast Exclusion Zone ReductionBy Kim Henley, Chris Batten
This paper discusses the use of the Orica WildFireTM flyrock model to help mining operations in Australia and Asia minimise blast exclusion zones for equipment, increasing utilisation and productivity
Feb 1, 2020
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Blast Optimization from Drone ImageryBy Markus Pötsch, Andreas Gaich
Optimization of surface blasting based on 3D models from drone imagery and a closed loop that starts with an automatic analysis of the geometry and the geological conditions and ends with an objective
Feb 1, 2020
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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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Blast Vibration Analysis from Signature HolesBy Nikolaos Petropoulos, Ulf Nyberg, Daniel Johansson
A series of signature boreholes were blasted to observe any difference between confined and free face blasts. Four geophones were used to capture the compressive wave. The conventional approach, i.e.
Feb 1, 2020
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Vibration Monitoring Standards Connected to the Use of Explosives in Different CountriesBy Johan Finsteen Gjodvad, Mathias Jern
The paper is part of the ongoing work of the Environmental committee of EFEE. To assist the European experts working with explosives one of the aims is to improve the common knowledge of similarities
Feb 1, 2020
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Experimental Investigation into the TNT Equivalency of Electric, Non-Electric and Electronic DetonatorsBy Emily Johnson, Catherine Johnson, Ben Sonpon, Kelly Williams
The effect of length to diameter of the detonator is compared using Ansys/Autodyn 2-D simulations, the results of which are validated experimentally. It was found that higher pressure comes with a lar
Feb 1, 2020
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The Impacts of Digital Revolution in the Mining Sector. Case of Study: Blasting Operations of a Copper Mine in the Northern of BrazilBy Vitor Fonseca de Barcelos, Jair Carlos Koppe
Our society is experiencing a digital revolution. Technology is demonstrating its significant potential for mining industry. In this paper are presented the measured and estimated impacts of applying
Feb 1, 2020
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Estimation of Critical Distances to Avoid Failures in Detonators by Dynamic Pressure.By Lizbeth A. Escobar, Phol M. Llanos, Maritza Y. Avila
The present research develops the estimation of critical parameters such as the distances and times between holes to avoid failure due to dynamic pressure in electronic detonators based on the near-fi
Feb 1, 2020
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Rock Fragmentation Prediction Using Machine LearningBy Ankit Jha, RICHARD AMOAKO
In this paper, we examine the challenges associated with the use of empirical rock fragmentation models. We highlight key parameters omitted by these models, and propose a machine learning approach th
Feb 1, 2020
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Design and Construction of an Electric Oven to Determine the Detonation Temperature of the FulminantBy Alexander S. Escalante, Luis R. Ramirez, Nelson A. Arostegui
Research, analyze, discuss, design, and build an electric oven to perform one of the quality control tests the fanel or common fulminers to determine what temperatures they can detonate at. Give pract
Feb 1, 2020
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Modeling Blast-Induced Damage in Open Pit Mines with Numerical ModelsBy Cristian Castro, Patricio Gomez, Jason Furtney, Augusto Lucarelli
Understanding the effect of blast-induced damage on wall stability is critical to safe and economical operation of a large open pit mine. In this paper, a numerical modeling methodology is used to inv
Feb 1, 2020
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Shock Pressure Transmission Characteristics in a Granitic Rock due to Calibrated Explosive LoadsBy Rakesh Raghavaraju, Bibhu Mohanty
The paper analyzes the decay of shock pressure as a function of distance from the borehole, and its implication on shock-induced fracture properties of the target rock as the first step in predicting
Feb 1, 2020
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Numerical Investigation of Blasting Fume Characteristics in a Block Caving MineBy Yong Pan, Purushotham Tukkaraja
In this paper, CFD was used to investigate the blasting toxic fume characteristics under different entrapping percentages and under changing muck pile properties like broken rock size and porosity. It
Feb 1, 2020
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Detection of Geological Features using Aerial Image Analysis and Machine LearningBy Ravi Sahu, 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
Feb 1, 2020
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Determination of Blast Vibration Limits by Direct Strain MeasurementBy Adrian Moore, Alan Richards, Andrew Brodbeck
Structural blast vibration limits should be based on the strength of the structure, the stress induced by blasting, and a responsible factor of safety. In this paper a methodology that uses direct str
Feb 1, 2020
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Case Study: Systematically Improving Drilling and Blasting Operations in Hard-Rock MinesBy Reinhold Daykin, Piers Wendlandt, Nathan Rouse
Drilling and blasting are key components of every hard-rock (i.e., metal/nonmetal/coal) mining operation. Well-executed and maintained drilling and blasting can have a major positive impact on the ove
Feb 1, 2020