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Numerical Analysis of the Rock Cutting Process and the Loading of Cutting ToolsBy M. Gimpel, R. Galler, T. Antretter, H. Kargl, M. Mikl-Resch, R. Tichy, W. Ecker, G. Pittino
"A computational method based on a continuum-mechanical approach to simulate rock cutting is developed and evaluated. The aim is to obtain the local loading acting at the cutting pick during operation
Jan 1, 2015
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Numerical Analysis of the Rock Cutting Process Based on a Two-parameter Description of Tensile Strength using the Weibull TheoryBy M. Gimpel, R. Galler, T. Antretter, H. Kargl, R. Tichy, W. Ecker, M. J. Mikl-Resch, G. Pittino
"A computational method based on a continuum-mechanical approach to simulate rock cutting is developed and evaluated. The aim is to obtain the local loading acting at the cutting pick during operation
Jan 1, 2015
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Numerical Analysis on Spalling Failure in Rocks using a Continuous-discontinuous MethodBy F. S. Su, P. Z. Pan, X. T. Feng, F. Yan, W. W. Ji
"This paper aims to simulate the spalling failure behavior in hard rock based on a self-developed numerical model, i.e. a rock discontinuous cellular automaton (RDCA). A crack initiation and propagati
Jan 1, 2015
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Numerical and Experimental Analysis on Selective Laser Post-Treatment of Cold Sprayed Titanium CoatingsBy P. Carlone, A. Astarita, F. Rubino
Cold gas dynamic spray is an innovative technology allowing the deposition of thin metallic layers on a bulk or sheet substrate. Titanium on aluminum deposition is very attractive to the aeronautic in
Jan 1, 2015
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Numerical and Experimental Investigation of Failure Mechanism of Rock Using Extended Digital Image Correlation (X-DIC) TechniqueBy S. Bhattacharjee
"Rock failure process is generally recorded or measured using conventional sensors like strain gauges, seismic, micro-seismic, acoustic, electromagnetic and other techniques. The above sensors are eit
Jan 1, 2015
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Numerical and Experimental Studies on Plastic Collapse in Cylindrical StructureBy Mahmoud Shakeri1
Various types of thin-walled structures have been frequently used as energy absorbers to mitigate the adverse effects of impact and hence protect the vehicle structure under consideration when subject
Oct 1, 2011
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Numerical and experimental study of wedge penetration into oil sandsBy D. D. Tannant
An experimental and numerical study was conducted on the geomechanical behaviour of oil sands during penetration tests in which a steel wedge with an apex angle of either 20 degrees or 30 degrees was
Jan 1, 2002
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Numerical Expansion Analyses of the Strategic Petroleum Reserve in Bayou Choctaw Salt Dome, USABy B. Y. Park
This paper develops a series of three-dimensional simulations for the Bayou Choctaw Strategic Petroleum Reserve. The U.S. Department of Energy plans to leach two new caverns and convert of one of the
May 1, 2009
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Numerical Information System Supporting Safe Management Of Copper Post-Flotation Tailings Pond "Elazny Most", PolandBy W. Swidzinski
"Zelazny Most" post-flotation copper mine tailings pond is the only place to of storeing wastes for KGHM POLSKA MI EDZ S.A. The flotation tailings is are the main waste stream in copper mining in Pola
Jan 1, 2007
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Numerical Investigation of Flow Regimes in Fractured Rock SlopesBy Jim Hazzard
A numerical investigation is presented to examine fluid flow in fractured rock slopes. In mining geomechanics, different numerical modelling approaches are used to estimate fluid pressures in open pit
Jun 1, 2012
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Numerical Investigation of Seismic Events Associated With Hydraulic FracturingBy M. B. Dusseault, A. Pirayehgar
"There is concern that hydraulic fracturing (HF) near an existing critically stressed fault could trigger slip and generate a seismic event of significance. To this end, a mathematical discontinuum mo
Jan 1, 2015
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Numerical Investigation of Slurry Flow and Particle Segregation Dynamics in a Gravity ConcentratorBy U. Caliskan, S. Miskovic
Gravity separation is a technique that depends on the difference in density of minerals for their separation. Although this method is one of the oldest separation techniques, it is still preferred in
Jan 1, 2019
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Numerical Investigation of the Mechanical Behaviour of Tournemire ArgilliteBy S. Pietruszczak, G. Su, T. S. Nguyen, E. Haghighat
"In this paper, the mechanical properties of Tournemire argillite are modeled using a mathematical framework which employs the microstructure tensor approach (Pietruszczak & Mroz, 2000). The experimen
Jan 1, 2015
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Numerical Model Parametric Study on the Effect of Stope UndercuttingBy H. Zniber El Mouhabbis
Ore dilution or stope overbreak increases the cost of production and ultimately reduces the profitability of a mining operation. The adverse economic impact of ore dilution is due to the added costs a
May 1, 2009
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Numerical Modeling of Aluminum Extrusion Processes for Complex Hollow Pro-Files based on a Spatial Flow FormulationBy N. Manopulo, J. Maier, L. Tong, C. Becker, P. Hora
The contribution presents a new finite element approach in which the common updated Lagrangian formulation is replaced by a spatial flow formulation applying a special arbitrary Lagrangian-Eulerian fo
Jan 1, 2015
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Numerical Modeling of Brittle Rock Failure Under Dynamic Stress LoadingBy N. Golchinfar
Tunnels in deep mines are subjected to high stresses. Fracture and failure of the rock mass around an opening can occur when mining-induced stresses are high. In burst-prone grounds, mining-induced se
Aug 1, 2013
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Numerical Modeling of Damage Patterns around Drifts in the Meuse/Haute-Marne Underground Research LaboratoryBy M. N. Vu, G. Armand, A. Noiret, D. Seyedi
Extensive experimental observations have been performed around drifts and shafts at the Meuse Haute-Marne (North-Eastern France) Underground Research Laboratory (URL) to assess the extent and pattern
Jan 1, 2015
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Numerical Modeling of Mining-Induced Stress and Microseismic Response using FLAC3DBy Shahé Shnorhokian
A study was conducted on the seismic activities and associated rockburst events that took place at an underground Canadian metal mine over a period of five years. In the first stage, a back analysis o
May 1, 2011
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Numerical Modeling of Standard Rock Mechanics Laboratory Tests using a Finite/Discrete Element ApproachBy S. Stefanizzi
In the present paper, numerical simulations based on a finite/discrete element approach are used to study deformation and failure process during standard rock mechanics. FEM/DEM modeling has been used
May 1, 2009
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Numerical Modeling Simulations of Spray-On Liners Support Potential in Highly Stressed and Rockburst Prone Rock ConditionsBy A. P. E. Dirige
Extensive field study has been performed to assess the capabilities of thin sprayon liners (TSLs) and conventional spray-on support systems for preventing rock and support material damage that often r
May 1, 2009