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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Study of the electric-booster and turbo-generator system and its influence on a 1.5 L gasoline engine
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Study of the electric-booster and turbo-generator system and its influence on a 1.5 L gasoline engine

机译:电动增压器和涡轮发电机系统的研究及其对1.5升汽油发动机的影响

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摘要

To effectively recovery the energy in exhausts and improve the transient performance of internal combustion engine. In this paper, a new electric turbo-compounding layout called electric-booster and turbo-generator system (EBTG) was established and studied in a 1.5 L gasoline engine. In the EBTG system, the turbo and compressor operate independently. Its impact on a gasoline engine was analyzed from the perspective of fuel economy, power output, availability distribution and transient performance. Results show that the proposed EBTG system is effective to improve the thermal efficiency of engine at high-speed and wide-open throttle conditions. Simultaneously, it is also valuable to solve the turbo-lag of engine. By applying EBTG system, the maximum reduction of specific fuel consumption was 2.6%. Exergy analysis showed that the EBTG system can reduce the irreversibility in turbine and recovery more exergy from exhausts. There was a 0.8 percentage point exergy efficiency increment at 4400 rpm and full-load operation. The step response time of boost pressure in EBTG engine decreased to about half of it in baseline at 2000 rpm and full-load condition.
机译:有效地恢复排气中的能量,提高内燃机的瞬态性能。在本文中,建立了一种新的电动涡轮增压布局,称为电动增压器和涡轮发电机系统(EBTG),并在1.5升汽油发动机中研究。在EBTG系统中,涡轮增压器和压缩机独立运行。它从燃料经济性,功率输出,可用性分布和瞬态性能的角度分析了对汽油发动机的影响。结果表明,所提出的EBTG系统有效地提高发动机的热效率,在高速和宽敞的节流条件下。同时,解决发动机的涡轮滞后也有价值。通过应用EBTG系统,特定燃料消耗的最大降低为2.6%。 Deergy分析表明,EBTG系统可以减少涡轮机和恢复的不可逆性。 4400 RPM和全负荷运行中有0.8个百分点的效率递增。 EBTG发动机升压的阶梯响应时间在2000 rpm和全负载条件下在基线下降到它的大约一半。

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