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Breakup and atomization characteristics of mono-dispersed diesel droplets in a cross-flow air stream

机译:横流气流中单分散柴油液滴的破裂和雾化特性

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This paper describes the microscopic and macroscopic breakup characteristics, as well as the velocity and size distributions, of mono-dispersed droplets in relation to the breakup regimes. For this experiment, a droplet generator equipped with a piezo stack produced mono-dispersed droplets. The droplet-breakup phenomenon due to the cross-flow was captured in microscopic and macroscopic views by using the following: a spark lamp, a Nd:YAG laser, a long distance microscope and a CCD camera as a function of the Weber number. Along with the analysis of the images, the droplet size and velocity distributions were measured in the near nozzle region by a phase Doppler particle analyzer system at bag, stretching and thinning, and catastrophic breakup regimes. The results of this study showed the size and velocity distributions of disintegrated droplets at the bag, stretching and thinning, and catastrophic breakup regimes. In the bag breakup regime, the droplets separated into small and large droplets during breakup. Alternatively, the droplets disintegrated at a shorter duration and formed a cloud, similar to a fuel spray injected through an injector, in the stretching and thinning and catastrophic breakup regimes.
机译:本文描述了与分散方式有关的单分散液滴的微观和宏观破碎特性,以及速度和尺寸分布。对于该实验,配备压电堆的液滴发生器产生单分散的液滴。通过使用以下方法,在显微镜和宏观视图中捕获了由于横流而引起的液滴破裂现象:火花灯,Nd:YAG激光器,长距离显微镜和CCD相机,这是韦伯数的函数。除了图像分析外,还通过相多普勒颗粒分析仪系统在袋,拉伸和稀化以及灾难性破坏情况下,在喷嘴附近区域测量了液滴的大小和速度分布。这项研究的结果表明,在袋子处崩解的液滴的大小和速度分布,拉伸和变薄以及灾难性的破碎情况。在袋子破裂的状态下,液滴在破裂过程中分为大液滴和小液滴。备选地,在拉伸,稀化和灾难性破坏方案中,液滴以较短的时间崩解并形成云,类似于通过喷射器喷射的燃料喷雾。

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