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Analyzing In-cylinder Flow Evolution and Variations in a Spark-Ignition Direct-Injection Engine Using Phase-Invariant Proper Orthogonal Decomposition Technique

机译:使用相位不变的正交分解技术分析火花点火直喷发动机的缸内流动演化和变化

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The preparation of fuel-air mixture and its efficient, clean, and reliable combustion in spark-ignition direct-injection (SIDI) engines depend to a large extend on the complex in-cylinder air flow. It has been widely recognized that the ensemble-averaged flow field provides rather limited understanding of in-cylinder air motion due to the strong cycle-to-cycle variations. In this study, time-resolved particle image velocimetry (PIV) is utilized to measure the in-cylinder air motion in a motored single-cylinder optical engine. Then, the velocity fields from different phases (crank-angle positions during intake and compression strokes) of 200 engine cycles are analyzed using phase-invariant proper orthogonal decomposition (POD) technique. With the phase-invariant POD method, the velocity fields from different phases are decomposed into a single set of POD modes. In this manner, the POD modes can be used to represent any phase of the flow. In addition, the changes of the POD coefficients over different phases demonstrate how the flow evolves within engine cycles. Simultaneously, the coefficients from the 200 cycles for the same phase quantify the variation among different cycles. The first two phase-invariant POD modes extract the strong intake flow structures, and the third mode contains the flow structure during the compression stroke. Overall, the insight of in-cylinder flow evolution and its cycle-tocycle variations can be further elucidated through the analysis of phase-invariant POD modes and their coefficients.
机译:燃料 - 空气混合物和在火花点火直喷其高效,清洁和可靠的燃烧的制备式(SIDI)发动机依赖于大的复杂的缸内空气流动延伸。它已被广泛认可的是,整体平均流场提供了在气缸内空气运动的相当有限的理解由于强周期到周期的变化。在这项研究中,时间分辨粒子图像测速仪(PIV)被用来测量在倒拖单缸光学引擎的缸内空气运动。然后,从不同相的200个发动机循环的速度场(曲柄角度位置时进气和压缩冲程)使用相位不变征正交分解(POD)技术进行分析。与相位不变POD法,从不同阶段的速度场被分解成一组的POD模式。以这种方式,在POD模式可以被用来表示流的任何阶段。此外,POD系数在不同相的变化表明如何发动机循环内的流动的演进。同时,从200次循环为相同的相位的系数量化不同的周期中的变化。前两个阶段不变POD模式提取强进气流结构,以及第三模式包含在压缩冲程期间的流动结构。总体而言,在缸内流动演化及其周期tocycle变化的认识可以进一步通过相位不变POD模式和它们的系数的分析阐明。

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