DocumentCode
630861
Title
Development of control-oriented charge mixing model and experimental validation using graphical analysis
Author
Yongsoon Yoon ; Zongxuan Sun ; Shupeng Zhang ; Zhu, Guoming G.
Author_Institution
Dept. of Mech. Eng., Univ. of Minnesota, Minneapolis, MN, USA
fYear
2013
fDate
17-19 June 2013
Firstpage
4441
Lastpage
4446
Abstract
A two-zone control-oriented charge mixing model is developed to describe charge mixing with thermodynamic interaction between fresh charge and residual gas during the intake stroke. This work enables operating range of homogeneous charge compression ignition (HCCI) to be extended without loss of stability. Cylinder volume is divided into two zones with a fictitious divider. In the mixed zone, fresh charge and residual gas expelled from the unmixed zone are mixed homogeneously. Otherwise, the unmixed zone contains rest of the residual gas burned in the previous cycle and trapped by early close of exhaust valves. Incoming fresh charge with high speed expels some of residual gas from the unmixed zone to the mixed zone by force. In this perspective, mass transfer represents charge mixing between two zones. For model validation, optical engine test is carried out. Optical access to the engines with an infrared (IR) camera allows graphical analysis to estimate thermodynamic states of two zones.
Keywords
cameras; internal combustion engines; mass transfer; mechanical testing; thermal variables control; thermodynamics; valves; HCCI engine; IR camera; cylinder volume; exhaust valve; fictitious divider; graphical analysis; homogeneous charge compression ignition engine; infrared camera; mass transfer; optical engine test; thermodynamic interaction; two-zone control-oriented charge mixing model; Cameras; Design automation; Engines; Optical imaging; Pistons; Temperature measurement; Valves;
fLanguage
English
Publisher
ieee
Conference_Titel
American Control Conference (ACC), 2013
Conference_Location
Washington, DC
ISSN
0743-1619
Print_ISBN
978-1-4799-0177-7
Type
conf
DOI
10.1109/ACC.2013.6580524
Filename
6580524
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