DocumentCode
3414563
Title
Engine modeling and exhaust gas estimation for DI-diesel engines
Author
Torkzadeh, Dara D. ; Langst, W. ; Kiencke, Uwe
Author_Institution
Inst. of Ind. Inf. Technol., Karlsruhe Univ., Germany
Volume
6
fYear
2001
fDate
2001
Firstpage
4585
Abstract
Engine models are a basis for better controlling combustion process and the exhaust emissions resulting from it. Currently the zero- and quasi-dimensional models are mostly used. These types of model are also addressed in this article. Zero-dimensional models are computationally efficient but they are not able to describe fuel efficiency or the generation of pollutants. It is therefore necessary to enhance combustion process models with phenomenological fuel spray and vaporization models, with a local resolution of at least two zones. The chemical model for calculating emissions is based on the two-zone model. The amount of mass, which is transferred from the unburned to the burned zone, is the input for a chemical model based on the equilibrium for the OCH-system (oxygen/carbon/hydrogen). The nitrogen-oxide emissions are calculated by using the advanced Zeldovich-mechanism which uses the reaction-kinetic approach rather than the less accurate chemical equilibrium assumption. The NOx-emissions (nitrogen-oxides) can be influenced by changing the exhaust-gas recirculation (EGR) rate
Keywords
air pollution control; chemical variables control; combustion; fuel; internal combustion engines; nitrogen compounds; parameter estimation; vaporisation; DI-diesel engines; NO; NOx-emissions; advanced Zeldovich-mechanism; burned zone; chemical model; combustion process control; emissions calculation; exhaust emissions control; exhaust-gas recirculation rate; mass transfer; nitrogen oxide emissions calculation; oxygen/carbon/hydrogen system; phenomenological fuel spray models; phenomenological fuel vaporization models; quasi-dimensional models; reaction-kinetic approach; unburned zone; zero-dimensional models; Carbon dioxide; Chemicals; Combustion; Computational modeling; Engines; Fuels; Hydrogen; Pollution; Process control; Spraying;
fLanguage
English
Publisher
ieee
Conference_Titel
American Control Conference, 2001. Proceedings of the 2001
Conference_Location
Arlington, VA
ISSN
0743-1619
Print_ISBN
0-7803-6495-3
Type
conf
DOI
10.1109/ACC.2001.945702
Filename
945702
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