DocumentCode :
3166061
Title :
Design and simulation of exhaust gas waste heat recovery system of gasoline engine based on Stirling cycle
Author :
Yingxiao Yu ; Zhaocheng Yuan ; Jiayi Ma ; Shiyu Li
Author_Institution :
State Key Lab. of Automobile Dynamic Simulation & Control, Jilin Univ., Changchun, China
Volume :
3
fYear :
2014
fDate :
19-21 Aug. 2014
Firstpage :
855
Lastpage :
859
Abstract :
A Stirling cycle engine is very suitable for the recovery of exhaust heat downstream turbine, as it has many favorable characteristics, such as high efficiency, less pollution, silent operation, high reliability, simple configuration and multi-fuel capability. Firstly, the 1.5T gasoline engine exhaust temperature testing experiment is presented, and the downstream turbine exhaust temperature is analyzed. Secondly, according to the range of the exhaust temperature and energy losses of the gasoline engine, the basic structure and operating parameters of the Stirling cycle engine are designed. Finally, a mathematical model of the Stirling cycle engine considering the heat losses and friction losses of the heat exchanger is developed, which is used to simulate the exhaust heat recovery system of gasoline engine. The simulated results are appropriate to evaluate the performance of designed Stirling engine. So it is feasible to recycle the exhaust heat of gasoline engine using a Stirling cycle engine.
Keywords :
Stirling engines; automobiles; exhaust systems; friction; heat losses; heat recovery; internal combustion engines; Stirling cycle engine; downstream turbine exhaust temperature; exhaust gas waste heat recovery system; exhaust heat recovery system; friction loss; gasoline engine exhaust temperature; heat exchanger; heat loss; Heat transfer; Petroleum; Power generation; Space heating; Stirling engines; Exhaust Gas; Gasoline Engine; Stirling cycle; Waste Heat Recovery;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Materials for Renewable Energy and Environment (ICMREE), 2013 International Conference on
Conference_Location :
Chengdu
Print_ISBN :
978-1-4799-3335-8
Type :
conf
DOI :
10.1109/ICMREE.2013.6893807
Filename :
6893807
Link To Document :
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