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Chemical engineering / Air pollution / Aerosol science / Heating /  ventilating /  and air conditioning / Environmental issues with energy / Fouling / Fly ash / Combustion / Volcanic ash / Pollution / Technology / Chemistry


Published in: proceedings of the 9th European Conference on Industrial Furnaces and Boilers, April 2011, Estoril, Portugal, CENERTEC (Ed.), Portugal Development of an advanced CFD model for ash deposit and aerosol format
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Document Date: 2012-06-18 09:50:22


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City

Graz / Estoril / /

Company

BIOS BIOENERGIESYSTEME GmbH / /

Country

Austria / Portugal / /

Currency

pence / /

/

Facility

Graz University of Technology / plant CO / plant Fig / /

IndustryTerm

flue gas components / exhaust gas channel / gas phase combustion / post-processing step / flue gas measurements / chemical reactions / involved chemical reactions / adiabatic flue gas temperature / high gas temperatures / gas phase combustion simulation / flue gas temperature / chemical compositions / kinetic energy / chemical composition / flue gas temperatures / exhaust gas receiver / flue gas prevailing / chemical interactions / dry flue gas / thermal oil boiler / combustion zone flue gas / flue gas / conventional flue gas / released flue gas / gas phase / flue gas velocity / /

MusicAlbum

O2 / H2O / H2 / CO2 / /

Organization

Institute for Process and Particle Engineering / Graz University of Technology / /

Person

Al P Ti / Kai Schulze / Robert Scharler / /

Position

author / deposit formation model for biomass fired boilers has been developed / model development steps / /

Product

Cl / A-8010 Graz / Olympus FE-26 Digital Camera / /

Technology

radiation / condensation / Fluid Dynamics / heat transfer / simulation / /

SocialTag