Title :
Flow Field Analysis and Improvement of Automobile Exhaust System Cold End
Author :
Hou, Xianjun ; Guo, Xuemin ; Liu, Zhien ; Yan, Fuwu ; Peng, Fuming
Author_Institution :
Sch. of Automotive Eng., Wuhan Univ. of Technol., Wuhan, China
Abstract :
The 3D computational domain model of a certain automobile exhaust system cold end was built by software UG, shaped grid by Gambit, numerical simulated by computational fluid dynamics software FLUENT. Analysis of the system´s internal flow quality , indicated that the system´s back pressure fulfilled the design requirements, the pre-muffler´s internal flow field is smooth, but the main muffler´s wall temperature differences are high, and there are large turbulent flow and jet flow in it, therefore the main muffler´s wall has a higher risk of hot deformation, the main muffler has a greater potential for regenerative noise and one of its inner bafflers is more likely to be damaged because of shock. For these reasons, the main muffler´s structure should be improved. After modified, the main muffler´s temperature distribution is more even, turbulence energy grows down, and the baffler opposite the jet flow is thickened.
Keywords :
automobiles; computational fluid dynamics; confined flow; design engineering; exhaust systems; flow simulation; heat transfer; jets; numerical analysis; silencers; temperature distribution; turbulence; 3D computational domain model; FLUENT; automobile exhaust system; back pressure; bafflers; cold end; computational fluid dynamics software; flow field analysis; hot deformation; internal flow quality; jet flow; muffler temperature distribution; regenerative noise; shaped grid; turbulence energy; turbulent flow; wall temperature differences; Automobiles; Computational modeling; Exhaust systems; Noise; Numerical models; Solid modeling; Temperature distribution;
Conference_Titel :
Computational Intelligence and Software Engineering (CiSE), 2010 International Conference on
Conference_Location :
Wuhan
Print_ISBN :
978-1-4244-5391-7
Electronic_ISBN :
978-1-4244-5392-4
DOI :
10.1109/CISE.2010.5676819