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首页> 外文期刊>Atomization and Sprays: Journal of the International Institutes for Liquid Atomization and Spray Systems >OPTICAL ANALYSIS OF SPRAY BEHAVIOR WITH A MODERN COMMON RAIL INJECTOR IN CANOLA OIL OPERATION
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OPTICAL ANALYSIS OF SPRAY BEHAVIOR WITH A MODERN COMMON RAIL INJECTOR IN CANOLA OIL OPERATION

机译:油菜籽油操作中现代常见喷油嘴喷雾行为的光学分析

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摘要

Using straight vegetable oil, such as canola oil, in agricultural diesel engines is one way to reduce dependence on petroleum fuel. However, canola oil has different physical properties from petroleum diesel. These properties can lead to several problems, such as poor spray atomization, incomplete combustion, crankcase dilution, combustion chamber deposits, and deposits at injectors and valves. Even new types of engines, which are equipped with modified tanks and injection systems, cannot completely compensate for the disadvantages of canola oil. In this study, macroscopic spray behavior was investigated under unfired conditions in a pressure chamber. The rail pressure was set to 112 and 200 MPa, and the chamber pressure was adjusted to 1.8 and 3.5 MPa, which correspond to 20 and 35 kg/m(3) of ambient density, respectively. The temperature of petroleum diesel was fixed to 20 degrees C, and the temperature of canola oil was adjusted to vary between 50 degrees C and 70 degrees C. The first step of the experimental investigation was a comparison between spray patterns of petroleum diesel and canola oil, which demonstrates the influence of fuels. Afterward, a comparison of spray patterns between an unused injector and an injector after 700 hours of engine operation with canola oil was carried out to show the influence of deposits. Finally, a sensitivity analysis of the Mie-scattering technique was conducted to explore the potential of this technique for different viscosities of fuel.
机译:在农用柴油机中使用低芥酸菜籽油等纯植物油是减少对石油燃料依赖的一种方法。但是,低芥酸菜子油具有与石油柴油不同的物理特性。这些特性可能导致一些问题,例如喷雾雾化差,燃烧不完全,曲轴箱稀释,燃烧室沉积物以及喷射器和阀门处的沉积物。甚至配备了改进的油箱和喷射系统的新型发动机也无法完全弥补芥花籽油的缺点。在这项研究中,宏观的喷雾行为是在未燃烧条件下在压力室内进行的。轨道压力设定为112和200 MPa,腔室压力调整为1.8和3.5 MPa,分别对应于20和35 kg / m(3)的环境密度。石油柴油的温度固定为20摄氏度,菜籽油的温度调整为50摄氏度至70摄氏度。实验研究的第一步是比较石油柴油和菜籽油的喷雾方式,这表明了燃料的影响。然后,对未使用的喷油器和使用低芥酸菜子油发动机运转700小时后的喷油器之间的喷雾方式进行了比较,以显示沉积物的影响。最后,对米氏散射技术进行了敏感性分析,以探索该技术对不同粘度燃料的潜力。

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