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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >A computational and experimental study of the scavenging flow in the transfer duct of a motored two-stroke cycle engine
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A computational and experimental study of the scavenging flow in the transfer duct of a motored two-stroke cycle engine

机译:电动二冲程循环发动机进气管道中的扫气流的计算和实验研究

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摘要

This study was carried out to assess the ability of a computational fluid dynamics (CFD) code to predict the scavenging flow in the transfer duct of a two-stroke cycle engine. A two-stroke cycle engine was modified to allow laser Doppler velocimetry (LDV) measurements to be made in one transfer duct. It was operated under motoring conditions at 500 r/min with a delivery ratio of 0.7. Predictions were obtained from a dynamic CFD simulation of the flow within the cylinder, transfer duct and a portion of the exhaust duct. Boundary conditions for the CFD model were obtained from experimentally measured pressure-time histories in the crankcase and exhaust. A comparison of measured and predicted transfer duct axial velocities at various locations within the duct showed that the CFD model could replicate the general trend of the flow but not the details. From the LDV measurements and CFD predictions, velocity oscillations were observed between the end of crankcase blowdown and transfer port closing. A one-dimensional general engine simulation package was used to investigate the gas dynamic activity in the transfer duct. It was found that the observed oscillations were due to pressure wave reflections in the transfer duct. The general trend of the axial velocity profile in the transfer duct was well replicated by the one-dimensional simulation as were the exhaust and crankcase pressures.
机译:进行了这项研究,以评估计算流体力学(CFD)代码预测两冲程循环发动机的输送管道中的扫气流量的能力。修改了二冲程循环引擎,以允许在一个传输管道中进行激光多普勒测速(LDV)测量。它在机动条件下以500 r / min的速度进行操作,输出比为0.7。通过对气缸,输送管道和一部分排气管道内的流动进行动态CFD模拟获得了预测。 CFD模型的边界条件是从曲轴箱和排气中的实验测量压力-时间历史记录中获得的。在导管内各个位置处测量和预测的传输导管轴向速度的比较表明,CFD模型可以复制流动的总体趋势,但不能复制细节。从LDV测量值和CFD预测值可以看出,在曲轴箱排污结束和变速箱关闭之间存在速度振荡。一维通用发动机仿真程序包用于研究传输管道中的气体动态活动。发现观察到的振荡是由于传输管道中的压力波反射引起的。一维模拟很好地复制了传输管道中轴向速度分布的总体趋势,排气和曲轴箱压力也得到了很好的再现。

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