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Cycle-to-Cycle Analysis of Swirl Flow Fields inside a Spark-Ignition Direct-Injection Engine Cylinder Using High-Speed Time-Resolved Particle Image Velocimetry

机译:使用高速时间分辨粒子图像速度测速火花点火直喷发动机筒中旋流旋流场的循环到周期分析

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The cycle-to-cycle variations of in-cylinder flow field represent a significant challenge which influence the stability, fuel economy, and emissions of engine performance. In this experimental investigation, the high-speed time-resolved particle image velocimetry (PIV) is applied to reveal the flow field variations of a specific swirl plane in a spark-ignition direct-injection engine running under two different swirl air flow conditions. The swirl flow is created by controlling the opening of a control valve mounted in one of the two intake ports. The objective is to quantify the cycle-to-cycle variation of in-cylinder flow field at different crank angles of the engine cycle. Four zones along the measured swirl plane are divided according to the positions of four valves in the cylinder head. The relevance index is used to evaluate the cycle-to-cycle variation of the velocity flow field for each zone. It is based on comparing the flow similarity of field fields of the same crank angle from different cycles. A comparison of relevance index for each zone between intake and compression strokes is made. The result shows the difference of cycle-to-cycle variation in each zone is affected by the motions of piston and intake valves. The cycle-to-cycle variations of flow field during intake stroke are higher than that during compression stroke, and the variations seem to be less pronounced under the high swirl condition where the flow is more directed in the cylinder.
机译:缸内流场的周期到周期的变型代表了影响稳定性,燃料经济性和发动机性能排放显著挑战。在该实验研究中,高速时间分辨粒子图像测速仪(PIV)被施加到揭示在两个不同的回旋空气流的条件下运行的火花点火直接喷射式发动机的特定涡流平面的流场的变化。涡流通过控制控制阀的开度产生安装在所述两个进气端口中的一个。其目的是在发动机循环的不同曲柄角来量化缸内流场的周期到周期的变化。沿测量回旋平面四个区域是根据在气缸盖4个的阀的位置分割。相关索引用于评估速度流场的每个区域的周期到周期的变化。它是基于比较从不同的周期相同的曲柄角的字段的字段的流相似。相关索引的用于进气和压缩冲程之间的每个区的比较制备。结果显示周期到周期的变化在每个区域中差由活塞和进气门的运动的影响。进气冲程期间的流场的周期到周期的变型压缩冲程期间都比较高,并且变化似乎在流动被更定向的气缸中的高漩涡条件下不太明显。

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