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Analysis of the Scavenging Process of a Two-Stroke Free-Piston Engine Based on the Selection of Scavenging Ports or Valves

机译:基于清除口径或阀门选择的双程自由活塞发动机的清除过程分析

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摘要

The free-piston engine generator (FPEG) is a linear energy conversion device with the objective of utilisation within a hybrid-electric automotive vehicle power system. In this research, the piston dynamic characteristics of an FPEG is compared with that of a conventional engine (CE) of the same size, and the difference in the valve timing is compared for both port scavenging type and valve scavenging type, with the exhaust valve closing timing is selected as the parameter. A zero-dimensional simulation model is developed in Ricardo WAVE software (2016.1), with the piston dynamics obtained from the simulation model in Matlab/SIMULINK (R2017a). For the CE and FEPG using scavenging ports, in order to improve its power output to the same level as that of a CE, the inlet gas pressure is suggested to be improved to above 1.2 bar, approximately 0.2 bar higher than that used for a CE. If a CE cylinder with exhaust valves is adopted or referred to during the development of an FPEG prototype, the exhaust valve is suggested to be closed earlier to improve its power output, and a higher intake pressure is also suggested if its output power is expected to be the same or higher than that of a CE.
机译:自由活塞发动机发生器(FPEG)是一种线性能量转换装置,其目的是在混合电动汽车车辆动力系统内使用。在该研究中,将FPEG的活塞动力学特性与传统发动机(CE)的相同尺寸的活塞动力学特性进行比较,并且将阀门正时的差异与排气阀进行比较,以及阀门清除型关闭时序被选为参数。在Ricardo波动软件(2016.1)中开发了零维模拟模型,并从Matlab / Simulink(R2017A)中的仿真模型获得的活塞动力学。为CE和FEPG使用扫气口,以提高其功率输出到相同的水平,一个CE的,提出了入口气体压力为比用于CE更高提高到高于1.2巴,约0.2巴。如果在开发FPEG原型的开发期间采用或者参考具有排气阀的CE缸,则建议排气阀以更早地关闭以改善其功率输出,并且如果预期其输出功率,也建议了更高的进气压力与CE相同或高。

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