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Third International Conference on CFD in the Minerals and Process Industries CSIRO, Melbourne, AustraliaDecember 2003 HOT METAL FLOW IN THE BLAST FURNACE HEARTH: THERMAL AND CARBON DISSOLUTION EFFECTS ON BUOYANCY,
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Document Date: 2003-11-26 11:59:10


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File Size: 1,96 MB

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City

Cape Town / Melbourne / AUSTIN / Wollongong / Oxford / /

Company

COMPAQ / MICROSOFT / /

Country

United States / Australia / United Kingdom / South Africa / /

Facility

The Netherlands Delft University of Technology / /

IndustryTerm

hot metal bath / gas flow / Hot metal exchange takes / carbon-saturated hot metal reference mass fraction carbon / local hot metal composition / hot metal density changes1 / flow carbon atom radius energy source momentum source / hot metal density / metal density / hot metal viscosity / lower hot metal density / hot metal / gas constant / hot metal entering hearth / hot metal mass fraction carbon / hot metal flow / reduction gas / porous media / hot metal flows / body force viscous energy source temperature melting temperature / Hot metal circulation / liquid hot metal / gradient divergence tensor product / liquid hot metal flows / metal viscosity / hot metal composition / higher hot metal density / energy / /

Movie

High and low / /

Organization

Congress / Delft University of Technology / /

Person

RAM SHARMA / /

Position

Artist / Walker / MODEL DESCRIPTION General / /

ProgrammingLanguage

MATLAB / C++ / /

ProvinceOrState

A.B. / /

Technology

heat transfer / simulation / AEA technology / /

URL

http /

SocialTag