Evaluation of HCFeMn and SiMn Slag Tapping Flow Behaviour Using Physicochemical Property Modelling and Analytical Flow Modelling

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dc.contributor.advisor Pistorius, Chris
dc.contributor.coadvisor Zietsman, Johan
dc.contributor.postgraduate Muller, Jacques
dc.date.accessioned 2015-04-17T10:15:11Z
dc.date.available 2015-04-17T10:15:11Z
dc.date.created 2015-09
dc.date.issued 2015 en_ZA
dc.description Dissertation (MSc)--University of Pretoria, 2015. en_ZA
dc.description.abstract The tapping of slag and metal is a key operational aspect in high-carbon ferromanganese (HCFeMn) and silicomanganese (SiMn) production. Tapping behaviour can be influenced by taphole design and the physicochemical properties of the tapped slag and metal. Unfavourable behaviour includes difficulties during taphole opening, and sluggish or intermittent slag flow. The slags of interest here consist mostly of components in the CaO-MnO-SiO2-Al2O3-MgO system, but differ greatly in MnO content and basicity due to the different operating practices. To evaluate the flow behaviour of these slags from submerged arc furnaces (SAFs) the latest physicochemical property models were applied to model viscosity, thermal conductivity, density, and heat capacity as functions of temperature and typical HCFeMn and SiMn slag compositions. These property values were applied in a simplified model of flow through the coke bed and taphole with an inlet pressure specified. Based on a model from the literature (Iida et al. 2008), a model was formulated with spherical-radial flow through the coke bed, being independent of the length of the fluid path through the coke bed. The effect of variation in the slag-metal ratio was investigated, with the focus on tap streams consisting of only slag. The estimated flow rates were comparable to those reported elsewhere (Kadkhodabeigi 2011) and found to be dependent mostly on slag viscosity, which was generally lower for the typical SiMn slags due to their composition and higher operating temperature. Furthermore, in most of the cases considered it was estimated that the flow through the taphole would develop into laminar flow, with the pressure drop predominantly over the coke bed. Flow rates were found to be highly dependent on the taphole diameter and coke bed void fraction, and to lesser extent on the taphole length and coke bed particle diameter. en_ZA
dc.description.availability Unrestricted en_ZA
dc.description.department Materials Science and Metallurgical Engineering en_ZA
dc.identifier.citation Muller, JM 2015, Evaluation of HCFeMn and SiMn Slag Tapping Flow Behaviour Using Physicochemical Property Modelling and Analytical Flow Modelling, MSc dissertation, University of Pretoria, Pretoria, viewed yyddmm <http://hdl.handle.net/2263/44429> en_ZA
dc.identifier.uri http://hdl.handle.net/2263/44429
dc.language.iso en en_ZA
dc.publisher University of Pretoria en_ZA
dc.rights © 2015 University of Pretoria. All rights reserved. The copyright in this work vests in the University of Pretoria. No part of this work may be reproduced or transmitted in any form or by any means, without the prior written permission of the University of Pretoria en_ZA
dc.subject Metallurgy en_ZA
dc.subject Modelling en_ZA
dc.subject UCTD
dc.title Evaluation of HCFeMn and SiMn Slag Tapping Flow Behaviour Using Physicochemical Property Modelling and Analytical Flow Modelling en_ZA
dc.type Dissertation en_ZA


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