DocumentCode
2089142
Title
The Steady Flow Test and CFD Numerical Simulation on Improving Research of Locomotive Diesel Engine Helical Intake Port
Author
Cui, Hongjiang ; Li, Minghai ; Han, Yundong
Author_Institution
Marine Eng. Coll., Dalian Maritime Univ., Dalian, China
Volume
4
fYear
2010
fDate
14-15 Aug. 2010
Firstpage
255
Lastpage
259
Abstract
In order to improve the performance of 16V240ZJB diesel engine, the method of steady flow test and CFD numerical simulation was adopted to do intake port structure optimization study. The previous design model of intake port was tested in the steady flow experiment system which provided the boundary condition for simulation calculation. The three-dimensional CAD model of intake port was built and then it was putted into AVL-FIRE platform to do CFD simulation with appropriate turbulence models and calculation methods. The detailed information of air flow field and discharge coefficient, swirl ratio of intake port was obtained by CFD simulation. Then the previous intake port structure was optimized to improve intake port performance. The research shows that CFD simulation is an efficient way to design engine intake port; Air flow condition is complex in the intake port and the parts nearing valve seat. Two improvement programs were discussed in this paper that can increase the air flux and improve the air flow condition.
Keywords
CAD; computational fluid dynamics; diesel engines; mechanical engineering computing; numerical analysis; optimisation; swirling flow; CFD; air flow field; discharge coefficient; helical intake port; locomotive diesel engine; numerical simulation; optimization; steady flow test; swirl ratio; three-dimensional CAD model; Atmospheric modeling; Diesel engines; Discharges; Equations; Mathematical model; Solid modeling; Valves; CFD simulation; intake port; locomotive diesel engine; structure optimization;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Engineering (ICIE), 2010 WASE International Conference on
Conference_Location
Beidaihe, Hebei
Print_ISBN
978-1-4244-7506-3
Electronic_ISBN
978-1-4244-7507-0
Type
conf
DOI
10.1109/ICIE.2010.351
Filename
5572733
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