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Biomass / Physical quantities / Chemical engineering / Combustion / Chemical properties / Fuels / Wood pellet / Heat capacity / Gas / Chemistry / Physics / Energy


Advanced CFD modelling of pulverised biomass combustion S. Zahirovic, R. Scharler, I. Obernberger Institute for Ressource Efficient and Sustainable Systems, Graz University of Technology, Graz, Austria Inffeldgasse 25, A
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Document Date: 2012-06-18 09:51:07


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City

Graz / /

Company

CO2 and CO / /

Country

Austria / /

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Facility

Graz University of Technology / I. Obernberger Institute / /

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IndustryTerm

turbulent gas phase combustion / energy equation / kJ/mol lignin activation energy density / activation energy kJ/mol cellulose / industrial applications / gas species / turbulent kinetic energy / energy fluxes / devolatilisation products / energy transfer equation / design tool / flue gas / surface combustion law / inert law / vaporisation law / activation energy / gas phase / chemical equilibrium calculations / energy / /

MusicAlbum

O2 / H2O / H2 / /

Organization

I. Obernberger Institute for Ressource Efficient and Sustainable Systems / Graz University of Technology / /

Person

Ai / /

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Position

J/kgK mp / developed CFD model for biomass grate furnaces / mp / RT / Marshall / /

Product

Sony Ericsson T700 Cellular Phone / A - 8010 Graz / Nikon D50 Digital Camera / /

Technology

radiation / heat transfer / simulation / /

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