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Microscopic behavior of spray droplets under flat-wall impinging condition

机译:平壁撞击条件下喷雾液滴的微观行为

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The impingement of fuel spray on the wall in direct-injection spark-ignition (DISI) engines affects the fuel-air mixture formation, combustion and exhaust emissions. A detailed understanding of the fuel spray and impingement is required to reduce the undesirable products of combustion whilst maintaining good fuel economy. In this study, the droplet size was measured by particle image analysis (PIA). The microscopic characteristics of impinging spray were obtained using ultra-high-speed imaging. By changing the injection and ambient pressures, the influences of breakup and coalescence on the droplet behavior were investigated. Before impingement, the region near the center of the spray has larger droplets size and lower droplet number density than the edge, which suggests that spray breakup and atomization is poor in the center region. After impingement, the droplet size decreases along the distance from the wall under low ambient pressure. However, large droplets appear in the region far from the wall under high ambient pressure, indicating the existence of a coalescence effect on the droplets.
机译:直喷式火花点火(DISI)发动机上的燃油喷雾撞击壁面会影响燃油-空气混合物的形成,燃烧和废气排放。需要对燃油喷雾和撞击有详细的了解,以减少不良的燃烧产物,同时保持良好的燃油经济性。在这项研究中,通过粒子图像分析(PIA)测量了液滴的大小。使用超高速成像获得冲击喷雾的微观特性。通过改变注入压力和环境压力,研究了破裂和聚结对液滴行为的影响。在撞击之前,喷雾中心附近的区域比边缘处的液滴尺寸更大,液滴数密度更低,这表明喷雾的破裂和雾化在中心区域很差。撞击后,在低环境压力下,液滴尺寸沿与壁的距离减小。然而,在高环境压力下,大的液滴出现在远离壁的区域中,这表明在液滴上存在聚结效应。

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