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Mathematical Modeling of a Compressible Oxygen Jet Interacting with a Free Surface in a Basic Oxygen Furnace for Steel ProductionBy Bruno Lebon, Koulis Pericleous, Georgi Djambazov, Mayur Patel
"High speed compressible jets are used in a number of steel-making applications. In the case of the BOF, a compressible oxygen jet reacts with a carbon-rich iron bath to reduce carbon levels and produ
Jan 1, 2012
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Mathematical Modeling of a Continuous Comminution ProcessBy E. J. Freeh, W. E. Horst
Mathematical models of a continuous comminution process are developed as an extension of the batch grinding model. Pilot-scale experimental work is described and the results are used to demonstrate th
Jan 1, 1973
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Mathematical Modeling of a Liquid Metal Feeding System for Single Belt CastersBy Roberto Parreiras Tavares, Frederico da Costa Fernandes, Guilherme Antonio Defendi, Vangleik Ferreira da Cruz, Júlio César de Sousa Pena
"Near-net-shape casting is an important area of research in the iron and steel industry today. Among the near-net-shape casting processes, the single-belt caster seems to be the most promising, since
Jan 1, 2004
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Mathematical Modeling of Air Gap Phenomena in Squeeze Casting of Aluminum Alloy A356By Naiyi Li, Henry Hu, Alfred Yu
"In the past few years, various squeeze cast aluminum components have been developed and successfully implemented in various vehicles by the automotive industry because of their superior engineering p
Jan 1, 2004
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Mathematical Modeling Of Argon And Nitrogen Plasma Arcs At Atmospheric PressureBy Marco A. Ramírez-Argáez
A 2D mathematical model was developed for the plasma arc welding process. Computational simulations based on mass and momentum conservation equations as well as Maxwell equations were performed by usi
Oct 30, 2017
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Mathematical Modeling Of Coal Seam Methane Drainage In Longwall MiningBy K. Oraee
Excessive emissions of methane from the coal seams can have a serious adverse effect on both safety and productivity of longwall coal faces. Mechanization of coal faces has increased production possib
Jan 1, 2010
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Mathematical Modeling of Fluid Dynamics and Vessel Vibration in the AOD ProcessBy Erich Hovestädt, Hans-Jürgen Odenthal, Christian Wuppermann, Herbert Pfeifer, Antje Rückert
"During the argon oxygen decarburization (AOD) process high-chromium steel melts are decarburized by oxygen and inert gas injection through sidewall nozzles and a top-lance. Due to the large amount of
Jan 1, 2012
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Mathematical Modeling of Heat Transfer and Microporosity Formation in Die Cast A356 WheelsBy C. Hennesmann, D. Maijer, S. L. Cockcroft, P. Yo
"Die cast aluminum wheels are one of the most difficult automotive castings to produce because of stringent cast surface and internal quality requirements. As part of a collaborative research agreemen
Jan 1, 2001
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Mathematical Modeling Of In Situ Uranium LeachingBy Robert S. Schecter, Paul M. Bommer
This paper presents the development of and results from a computer model of in situ uranium leaching. This model uses a streamline-concentration balance approach and is useful with a wide range of res
Jan 1, 1979
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Mathematical Modeling Of In-Situ Uranium Leaching (837e8e43-bb20-481e-a25b-582eefa332d4)By Paul M. Bommer
Abstract. This cater presents the development of and results from a computer model of in-situ uranium leaching. This model uses a streamline-concentration balance approach and is useful with a vide ra
Jan 1, 1979
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Mathematical Modeling Of In-Situ VitrificationBy Baozhong Zhao
In-situ vitrification (ISV) is a new technology used for treating radioactive, organic and inorganic contaminated soils. In this process, electricity is applied through electrodes buried in the contam
Jan 1, 1994
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Mathematical Modeling of Ion Exchange Columns with Emphasis on Hydrous Crystalline Silico-Titanates, Molecular Sieves and Non Ideal SolutionsBy M. E. Huckman
In this paper, we review the equations needed to construct an ion exchange column model. These models contain three major components: 1) a differential material balance around the colunm, 2) a differe
Jan 1, 1996
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Mathematical Modeling of Ion Exchange Columns with Emphasis on Hydrous Crystalline Silico-Titanates, Molecular Sieves and Non Ideal Solutions (fef025ea-7007-41d7-9897-1882c90a0444)By D. Gu, R. G. Anthony, C. V. Philip, M. E. Huckman
"In this paper, we review the equations needed to construct an ion exchange column model. These models contain three major components: 1) a differential material balance around the column, 2) a differ
Jan 1, 1996
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Mathematical Modeling Of Itabiritic Iron Ore Floating In Small Diameter Hydrocycles Of The Minas-rio ProjectBy Luís Marcelo Tavares, Henrique Dias Gatti Turrer, Luciana Pereira Alves
Desliming is a method of classifying mineral particles, which aims at removal of slimes so as to prepare the slurry to downstream concentration processes. It is a common item in mineral processing flo
Oct 3, 2019
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Mathematical Modeling of Jig Bed StratificationBy Barda K. Mishra, Surya P. Mehrotra
"INTRODUCTIONIn a jig, which is primarily a coarse mineral concentration device, the bed of mineral particles is pulsated with a stream of water resulting in the particles of different specific gravit
Jan 1, 2003
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Mathematical Modeling of Leaching Kinetics with Diminishing Driving ForcesBy Edgar E. Vidal, Patrick R. Taylor
Standard textbook equations for heterogeneous kinetics typically utilize a constant driving force to solve for rates and times of reactions. In order to more closely model real systems, equations and
Jan 1, 2005
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Mathematical Modeling of Levitation Melting of MetalsBy A. McLean, L. Gao, Z. Shi, Y. D. Yang, K. Chattopadhyay, G. F. Zhang
Levitation melting of metals is one of the emerging applications of magnetic and electric fields in liquid metal refining. The varying magnetic field generates induced current inside the metal droplet
Jan 1, 2015
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Mathematical Modeling of Mean Flow Stress during Hot Strip Rolling of NB Microalloyed SteelsBy John J. Jonas, Sang-Hyun Cho, Ki-Bong Kang
"The recrystallization behavior of Nb micro alloyed steels containing Cr, Mo, Ni and Ti. was studied using hot torsion testing with the aim of modeling the recrystallization processes and the mean flo
Jan 1, 2001
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Mathematical Modeling of Melting and Solidification in Electromagnetic Confinement SystemsBy J. R. Bhamidipati, Nagy EI-Kaddah
"Over the years, mathematical modeling has been established as a viable tool for design and analysis of melting and solidification processes. Modeling of electromagnetic casting and melting systems in
Jan 1, 1994
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Mathematical Modeling of Mixing and Unmixedness in Plasma JetsBy Olusegun J. Ilegbusi
"A two-fluid model is used to calculate flow and heat transfer characteristics of a plasma jet. This model accounts for both gradient-diffusion mixing and unmixing that may result from pressure-gradie
Jan 1, 1994