Influence of trailing edge curve on the performance of radial turbine in turbocharger

Author:

Yun Jeong-Eui1,Atac Omer Faruk2,Kim Jung-Bae3,Kim Gi-Yong3

Affiliation:

1. Kangwon National University Graduate School of Disaster Prevention, , 346 Joongang-ro,, Samcheok-si, Gangwon-do, Republic of Korea 25913

2. Inha University Department of Mechanical Engineering, , 100 Inha-ro, Michuhol-gu, Incheon, Republic of Korea 22212

3. Keyyang Precision Co., Ltd. , 63 Gongdan 4-gil, Gimcheon-si, Gyeongsangbuk-do, Republic of Korea 39537

Abstract

Abstract To combat climate change and promote sustainable engine development, the optimization of the turbocharger development process is necessary to decrease emissions and increase fuel economy. This article presents the influence of trailing edge curves on the performance of the significantly small radial turbine impeller of an automotive turbocharger used in a 0.8-l two-cylinder gasoline engine by comparing numerical analysis results under two boundary conditions: a constant pressure ratio and constant mass flow rate. The curve of a trailing edge depends on several parameters; however, in this study, the exponent ($n$) was selected to modify the turbine impeller trailing edge profile, as it exhibits a more significant influence on the curve than other parameters. Hence, computational fluid dynamics analyses were conducted on the radial turbine for various trailing edge curves under a constant pressure ratio and constant mass flow rate, and the results were compared. The results indicated that the efficiency improvement was negligible under the pressure ratio and mass flow rate conditions due to inadequate alterations. Nevertheless, a significant shaft power improvement was observed based on changes in the trailing edge curve under a constant pressure ratio. In contrast, the same changes caused a considerable decrease in the shaft power under a constant mass flow rate.

Publisher

Oxford University Press (OUP)

Subject

General Environmental Science,Architecture,Civil and Structural Engineering

Reference27 articles.

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2. Modelling of a turbocharger turbine under pulsating inlet conditions;Chen;Proc Inst Mech Eng Part A J Power Energy,1996

3. Turbocharger aerodynamic design;Flaxington;Proc Inst Mech Eng Part C J Mech Eng,1999

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