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Comparison and analysis of the effects of various improved turbocharging approaches on gasoline engine transient performances

机译:各种改进涡轮增压方法对汽油机瞬态性能影响的比较分析

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In this paper, several kinds of improved modes for exhaust gas turbocharging (EGT) have been investigated on the transient performances, including steam-assisted turbocharging (SAT), electronically controlled turbocharging (ECT) and supercharger-exhaust gas turbocharging (SET). A turbocharged gasoline engine was employed a the study object, which was conducted bench test firstly to get basic data for building and calibrating the simulation model. Then, an accurate and reliable GT-Power model in steady and transient engine operation was developed. On this basis, the transient processes of four types of engines: EGT engine, SET engine, SAT engine and ECT engine were investigated by simulation and comparative analysis. The results show that SET, SAT and ECT can reduce the response time and fuel consumption in acceleration process. The response time of various turbocharging approaches follows the descending sequence of EGT, SAT, ECT and SET. At the speed of 2000 r/min (from idling to full load), compared with EGT engine, the specific fuel consumption (SFC) of SET engine is decreased by 23.3%, while it can be reduced by 38.2% and 36.3% in SAT engine and ECT engine, respectively. Finally, to reveal the improvement potentials of SAT and ECT, both of them were re-matched with a larger turbine without wastegate. The results indicate that the torque and thermal efficiency of SAT and ECT engines can be further improved, while the acceleration equilibrium time is increased. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文针对瞬态性能研究了几种改进的排气涡轮增压模式(EGT),包括蒸汽辅助涡轮增压(SAT),电控涡轮增压(ECT)和增压器排气涡轮增压(SET)。以涡轮增压汽油机为研究对象,首先对其进行了台架试验,以获取建立和校准仿真模型的基本数据。然后,建立了在稳定和瞬态发动机运行中的准确可靠的GT-Power模型。在此基础上,通过仿真和对比分析研究了四种类型的发动机的过渡过程:EGT发动机,SET发动机,SAT发动机和ECT发动机。结果表明,SET,SAT和ECT可以减少加速过程中的响应时间和油耗。各种涡轮增压方法的响应时间遵循EGT,SAT,ECT和SET的降序。在2000 r / min的速度下(从空转到满载),与EGT发动机相比,SET发动机的比油耗(SFC)降低了23.3%,而在SAT中可以降低38.2%和36.3%引擎和ECT引擎。最后,为了揭示SAT和ECT的改进潜力,它们都与没有废气门的大型涡轮机重新匹配。结果表明,可以进一步提高SAT和ECT发动机的扭矩和热效率,同时增加加速平衡时间。 (C)2015 Elsevier Ltd.保留所有权利。

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