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Investigation of Cycle-to-Cycle Variation of In-Cylinder Engine Swirl Flow Fields Using Quadruple Proper Orthogonal Decomposition

机译:四重正交正交分解研究缸内发动机涡流场的周期变化

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摘要

It has been observed that the swirl characteristics of in-cylinder air flow in a spark ignition direct injection (SIDI) engine affect the fuel spray dispersion and flame propagation speed, impacting the fuel mixture formation and combustion process under high swirl conditions. In addition, the cycle-to-cycle variations (CCVs) of swirl flow often degrade the air-fuel mixing and combustion quality in the cylinder. In this study, the 2D flow structure along a swirl plane at 30 mm below the injector tip was recorded using highspeed particle image velocimetry (PIV) in a four-valve optical SIDI engine under high swirl condition. Quadruple proper orthogonal decomposition (POD) was used to investigate the cycle-to-cycle variations of 200 consecutive cycles. The flow fields were analyzed by dividing the swirl plane into four zones along the measured swirl plane according to the positions of intake and exhaust valves in the cylinder head. Experimental results revealed that the coefficient of variation (COV) of the quadruple POD mode coefficients could be used to estimate the cycle-to-cycle variations at a specific crank angle. The dominant structure was represented by the first POD mode in which its kinetic energy could be correlated with the motions of the intake valves. Moreover, higher order flow variations were closely related to the flow stability at different zones. In summary, quadruple POD provides another meaningful way to understand the intake swirl impact on the cycle-to-cycle variations of the in-cylinder flow characteristics in SIDI engine.
机译:已经观察到,火花点火直接喷射(SIDI)发动机中的缸内气流的旋流特性影响燃料喷雾的扩散和火焰传播速度,在高旋流条件下影响燃料混合物的形成和燃烧过程。此外,旋流的逐周期变化(CCV)通常会降低气缸中的空气燃料混合和燃烧质量。在这项研究中,在高速涡流条件下,在四气门光学SIDI发动机中使用高速粒子图像测速(PIV)记录了沿喷油嘴尖端下方30 mm的涡流平面的二维流动结构。使用四重固有正交分解(POD)来研究200个连续循环之间的循环变化。根据进气门和排气门在气缸盖中的位置,将旋流平面沿测得的旋流平面分为四个区域,从而对流场进行了分析。实验结果表明,四倍POD模式系数的变异系数(COV)可用于估计特定曲柄角下的逐周期变化。主导结构由第一个POD模式表示,在该模式中其动能可以与进气门的运动相关。此外,高阶流量变化与不同区域的流量稳定性密切相关。总之,四重POD提供了另一种有意义的方式来理解进气涡流对SIDI发动机缸内流动特性的逐周期变化的影响。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2017年第7期|072803.1-072803.10|共10页
  • 作者

    Penghui Ge; David L. S. Hung;

  • 作者单位

    University of Michigan-Shanghai Jiao Tong University Joint Institute, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, China;

    Mem. ASME University of Michigan-Shanghai Jiao Tong University Joint Institute, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, China;

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