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首页> 外文期刊>Atomization and Sprays: Journal of the International Institutes for Liquid Atomization and Spray Systems >ANALYZING THE CYCLE-TO-CYCLE VARIATIONS OF PULSING SPRAY CHARACTERISTICS BY MEANS OF THE PROPER ORTHOGONAL DECOMPOSITION
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ANALYZING THE CYCLE-TO-CYCLE VARIATIONS OF PULSING SPRAY CHARACTERISTICS BY MEANS OF THE PROPER ORTHOGONAL DECOMPOSITION

机译:用正确的正交分解手段分析脉冲喷雾特性的周期变化

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摘要

This paper presents a novel approach to analyze the cycle-to-cycle variations of pulsing spray characteristics. The purpose is to quantify the cycle-to-cycle variations of the macroscopic characteristics of spark-ignition direct-injection (SIDI)fuel injector spray, so that improvements of air-fuel mixture formation can be made to enhance the combustion efficiency and reduce emissions of SIDI engines. The experiments were carried out using an eight-hole SIDI fuel injector under a controlled ambient environment with an extended range of test conditions. Using a strobe light as an illumination source, multiple cycles of macroscopic spray structure images at a fixed injection delay time were taken by a CCD camera. The proper orthogonal decomposition (POD) technique was implemented to analyze the cycle-to-cycle characteristics of spray variation. In addition, the effects of injection pressure, ambient pressure, and fuel type on spray variation were also investigated. POD analysis reveals that the mode 1 pattern captured the ensemble-averaged spray shape, the mode 2 pattern provided quantification of spatial fuel distribution variations of different cycles of spray, and higher mode patterns further quantified the finer details of the variations surrounding the well-atomized periphery of the spray structure. POD analysis also quantitatively confirms that better-atomized sprays led to slightly higher variations of finer structures along the spray boundary. Overall, this study demonstrates that POD analysis can be used as a novel approach to quantify the cycle-to-cycle variation of pulsing spray characteristics.
机译:本文提出了一种新颖的方法来分析脉冲喷雾特性的逐周期变化。目的是量化火花点火直接喷射(SIDI)喷油器喷雾的宏观特性的逐周期变化,从而可以改善混合气的形成,从而提高燃烧效率并减少排放SIDI引擎。使用八孔SIDI喷油器在扩展的测试条件范围内的受控环境下进行了实验。使用频闪灯作为照明源,通过CCD相机以固定的注射延迟时间拍摄了多个周期的宏观喷雾结构图像。实施了适当的正交分解(POD)技术来分析喷雾变化的逐周期特征。此外,还研究了喷射压力,环境压力和燃料类型对喷雾变化的影响。 POD分析显示,模式1模式捕获了总体平均喷雾形状,模式2模式提供了不同喷雾周期的空间燃料分布变化的量化,而更高模式模式进一步量化了围绕良好雾化的变化的更精细细节喷雾结构的外围。 POD分析还定量地证实,雾化程度更高的喷雾导致沿喷雾边界的较细微结构的变化略高。总的来说,这项研究表明,POD分析可以用作量化脉冲喷雾特性逐周期变化的一种新颖方法。

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