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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Investigation of the optimum operating condition of a dual piston type free piston engine generator during engine cold start-up process
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Investigation of the optimum operating condition of a dual piston type free piston engine generator during engine cold start-up process

机译:发动机冷启动过程中双活塞式自由活塞发电机发电机的最佳运行条件研究

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摘要

The free-piston engine generator (FPEG) is a new type of energy conversion device that converts chemical energy of fossil fuel into electric energy and eliminates the limitation of crankshaft mechanism, and can be applied to range extenders in electric vehicles. This article investigated the optimal compression ratio of FPEG under successful ignition condition so as to explore the range of working conditions of FPEG engine during cold start. A numerical model was established in MATLAB/Simulink, and the simulation results were compared with the test data of stably running prototype. The difference between the simulated in-cylinder gas pressure and the experimental data could be controlled within 5%, indicating the accuracy of the model. The simulation results show that the target compression ratio is the most important parameter during the cold start of engine, and the operating frequency has the least influence on the system performance during cold start. During cold start of FPEF, it is recommended to control the excess air ratio between 0.8 and 0.9, the compression ratio range between 4 and 7, and the operating frequency of the system between 10 and 16 Hz.
机译:自由活塞发动机发电机(FPEG)是一种新型的能量转换装置,它将化石燃料的化学能转换为电能,消除了曲轴机构的限制,可用于电动汽车的增程器。本文研究了FPEG发动机在成功点火条件下的最佳压缩比,以探索FPEG发动机冷起动工况范围。在MATLAB/Simulink中建立了数学模型,并将仿真结果与稳定运行的样机试验数据进行了比较。模拟的缸内气体压力与实验数据的差值可以控制在5%以内,表明了模型的准确性。仿真结果表明,目标压缩比是发动机冷起动过程中最重要的参数,工作频率对系统性能的影响最小。在FPEF冷启动期间,建议将过量空气比控制在0.8和0.9之间,压缩比范围控制在4和7之间,系统的工作频率控制在10和16 Hz之间。

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