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首页> 外文期刊>International Journal of Automotive Technology >EXPERIMENTAL INVESTIGATION OF NOZZLE CAVITATING FLOW CHARACTERISTICS FOR DIESEL AND BIODIESEL FUELS
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EXPERIMENTAL INVESTIGATION OF NOZZLE CAVITATING FLOW CHARACTERISTICS FOR DIESEL AND BIODIESEL FUELS

机译:柴油和生物柴油喷嘴空化流特性的实验研究

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摘要

This study was performed to clarify criteria for cavitation inception and the relationship between flow conditions and cavitation flow patterns of diesel and biodiesel fuels. The goal was to analyze the effects of injection conditions and fuel properties on cavitating flow and disintegration phenomena of flow after fuel injection. To accomplish this goal, it was utilized a test nozzle with a cylindrical cross-sectional orifice and a flow visualization system composed of a fuel supply system and an image acquisition system. In order to analyze the rate of flow and injection pressure of the fuel, a flow rate meter and pressure gauge were installed at the entrance of the nozzle. A long distance microscope device equipped with a digital camera and a high resolution ICCD camera were used to acquire flow images of diesel and biodiesel, respectively. The effects of nozzle geometry on the cavitating flow were also investigated. Lastly, a detailed comparison of the nozzle cavitation characteristics of both fuel types was conducted under a variety of fuel injection parameters. The results of this analysis revealed that nozzle cavitation flow could be divided into four regimes: turbulent flow, beginning of cavitation, growth of cavitation, and hydraulic flip. The velocity coefficient of diesel fuel was greatly altered following an increase in flow rate, although for biodiesel, the variation of the velocity coefficient relative to the rate of flow was mostly constant. The cavitation number decreased gradually with an increase in the Reynolds number and Weber number, and the discharge coefficient was nearly equal to one, regardless of cavitation number. Lastly, it could not observe cavitation growth in the tapered nozzle despite an increase in fuel injection pressure.
机译:进行这项研究的目的是弄清空化开始的标准,以及柴油和生物柴油燃料的流态与空化流型之间的关系。目的是分析喷射条件和燃料特性对燃料喷射后空化流和流的崩解现象的影响。为了实现该目标,使用了具有圆柱形横截面孔的测试喷嘴以及由燃料供应系统和图像采集系统组成的流量可视化系统。为了分析燃料的流量和喷射压力,在喷嘴的入口处安装了流量计和压力计。使用配备有数码相机和高分辨率ICCD相机的长距离显微镜设备分别采集柴油和生物柴油的流动图像。还研究了喷嘴几何形状对空化流的影响。最后,在各种燃料喷射参数下,对两种燃料的喷嘴空化特性进行了详细的比较。分析结果表明,喷嘴的气蚀流可分为四种状态:湍流,气蚀开始,气蚀的增长和水力翻转。柴油的速度系数随流速的增加而发生了很大的变化,尽管对于生物柴油,速度系数相对于流速的变化大部分是恒定的。空化数随雷诺数和韦伯数的增加而逐渐减小,并且与空化数无关,排放系数几乎等于1。最后,尽管增加了燃油喷射压力,但仍无法观察到锥形喷嘴中的气穴现象。

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