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Development of a Dynamic Blasting SimulationBlasting, particularly bench blasting, uses finite length cylinders of explosive close to two free faces. The rock to be blasted is usually intersected by a complex 3-D system of joints. To fully si
Jan 1, 1990
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Development Of A Dynamic High Pressure Triaxial Test DeviceBy J. Q. Ehrgott
INTRODUCTION The U. S. Army Engineer Waterways Experiment Station (WES), under sponsorship of the Defense Atomic Support Agency, has recently developed a unique dynamic high-pressure triaxial testi
Jan 1, 1971
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Development of a Fault-Rupture Environment in 3D: A Numerical Tool for Examining the Mechanical Impact of a Fault on Underground ExcavationsBy Bo-Hyun Kim, Mark K. Larson
"While faults are commonly simulated as a single planar or non-planar interface for a safety or stability analysis in underground mining excavation, the real 3D structure of a fault is often very comp
Jan 1, 2018
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Development Of A Fiberglass Cable BoltBy D. A. Peterson
Laboratory testing was completed to determine the effectiveness of a fiberglass cable bolt (FCB) as a cuttable rock support for a continuous, hard-rock mining method. The FCB consists of four Polystal
Jan 1, 1993
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Development of a filtered inverse velocity method analyser: A comparative study of smoothing filters in surface mines for optimisation of slope failure predictionsBy M. M. Masood, G. Y. Raju, T. Verma
The inverse velocity method has proven to be an effective approach for predicting slope failures in surface mines by analysing displacement monitoring data. However, the accuracy of inverse velocity m
Sep 1, 2025
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Development Of A Flotation Simulation Including Reliability-based Maintenance Model And A Multicompartment Model For Metallurgical Performance And Quality - SME Annual Meeting 2022By P. Mendoza, R. Siwale, H. Amini, R. Silva, M. Richards, V. Ngcoza, D. Rivera, C. Canaza, R. van Reenen
Development of a realistic flotation model to predict its performance is of paramount importance to the processing plant and operators, a model that accounts for predictive and no-predictive maintenan
Mar 2, 2022
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Development Of A Flotation Simulator Based On A First Principles ModelIn flotation, particulate materials are separated by controlling the hydrophobicity of the particles using appropriate collectors. In this regard, contact angle (?) is the most important process varia
Sep 1, 2012
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Development of a Flowsheet Incorporating Cyanidation, CIP, CCD and the Sart Process to Treat Flotation Tailings from a Mexican Copper MineBy A. Holland, T. Krumins, E. Olin, J. F. M. Castilleja, J. Geldart, C. Fleming, I. Jackman
A flowsheet has been developed to treat the flotation tailings from a copper mine in Mexico to recover gold and silver by cyanidation and carbon-in-pulp (CIP). The plant will treat ~15,000 t/day of a
Jan 1, 2019
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Development Of A Fluid Mechanical Model For Flowing Film ConcentratorsBy A. K. Majumder
In an effort to test the extent to which fundamental fluid mechanics can provide a prediction of particle separation, a study on a simple parallel-sided sluice has been carried out using glass bead an
Sep 1, 2012
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Development of a Froth Dropback Measurement DeviceDevelopment of a Froth Dropback Measurement Device
Sep 13, 2010
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Development of a Fuzzy Model for Predicting the Penetration Rate of Tricone Rotary Blasthole Drilling in Open Pit MinesBy A. Nuric, S. Nuric, L. Kricak, M. Negovanovic, S. Mitrovic
"SynopsisRotary drilling with rolling tricone bits is the most widely used method for drilling large-diameter blast-holes in large surface mining operations. This drilling method is applicable to a wi
Jan 1, 2015
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Development of a fuzzy model to estimate engineering rock mass propertiesBy S. Jeon, J. Kim, H. Lee
Though the importance of the engineering rock mass properties such as deformation modulus, cohesion and friction angle is emphasized, the researches on the reliability of these values are rarely perfo
Jan 1, 2003
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Development Of A Gas Monitor Simulator And Mine Rescue Contest Field TrialsBy D. W. Alexander
Researchers from the U.S. Office of Mine Safety and Health Research (OMSHR) of the U.S. National Institute for Occupational Safety and Health (NIOSH) completed field trials during coal mine rescue con
Jan 1, 2012
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Development of a Goaf Pipe Gas Sampling Technique in Detecting Spontaneous Combustion in CollieriesA recently developed technique for use in collieries is described in which samples of gas of relatively high vitiation value are obtained from points deep within a developing goaf by means of pipes. T
Jan 1, 1961
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Development of a gravity flow numerical model for the evaluation of draw point spacing for block/panel caving - SynopsisBy R. L. Castro
Block caving methods, when operated under favourable rock mass conditions, can achieve higher production rates and lower operating costs than other various existing underground mining applications. Fo
Jan 1, 2009
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Development of a Heuristic Methodology for Designing Measurement Networks for Metallurgical AccountingBy P. A. Bepswa
A numerical study done to test the efficacy of heuristics developed for the design of measurement networks for high precision metallurgical accounting is presented in this paper. The heuristics consid
Jan 1, 2014
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Development Of A High Blow Energy Hydraulic ImpactorBy Wm. Ross Wayment, Innes P. Grantmyre
INTRODUCTION It has been recognized for some time that major changes in mining methods will be required in the near future. Two types of factors contribute to this need for change. Intrinsic factor
Jan 1, 1976
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Development Of A High Performance, Low Maintenance, In-Line Water Spray Cooler For MinesBy John McCoy, Edward Thimons, Kenneth Heller
As the working levels in domestic mines are developed to greater depths and work areas move further from the shafts, maintaining a safe and healthful working environment becomes more difficult. Increa
Jan 1, 1982
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Development Of A High-Rate Floc-Blanket Process For Gold And Uranium Pregnant Solution ClarificationBy Lancelot E. Kun
The high-rate floc blanket clarification process developed by the Anglo American Corporation of South Africa is capable of continuously clarifying gold and uranium pregnant solutions containing 200-25
Jan 1, 1984
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Development of a High-temperature Micro-indentation Technique for Material Mechanical Property Evaluation up to 1200 oCBy J. M. Tannenbaum
A depth-sensing micro-indentation technique is developed for evaluating mechanical properties of materials at elevated temperatures (to 1200°C). System description and design considerations of the tes
Jan 1, 2010