首页> 外文期刊>SAE International Journal of Fuels and Lubricants >Effect of Off-Axis Needle Motion on Internal Nozzle and Near Exit Flow in a Multi-Hole Diesel Injector
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Effect of Off-Axis Needle Motion on Internal Nozzle and Near Exit Flow in a Multi-Hole Diesel Injector

机译:离轴针运动对多孔柴油机内喷嘴和近出口流量的影响

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The internal structure of Diesel fuel injectors is known to have a significant impact on the nozzle flow and the resulting spray emerging from each hole. In this paper the three-dimensional transient flow structures inside a Diesel injector is studied under nominal (in-axis) and realistic (including off-axis lateral motion) operating conditions of the needle. Numerical simulations are performed in the commercial CFD code CONVERGE, using a two-phase flow representation based on a mixture model with Volume of Fluid (VOF) method. Moving boundaries are easily handled in the code, which uses a cut-cell Cartesian method for grid generation at run time. First, a grid sensitivity study has been performed and mesh requirements are discussed. Then the results of moving needle calculations are discussed. Realistic radial perturbations (wobbles) of the needle motion have been applied to analyze their impact on the nozzle flow characteristics. Needle radial motions are based on high-speed X-ray phase-contrast imaging collected at Argonne National Laboratory. Different types of wobbles are presented and the results are compared to the nominal in-axis motion behavior. Hole-to-hole differences are discussed and quantified. Complex flow structures are observed in the sac region of the nozzle and an explanation for the different flow structures emerging from each hole is provided. From this work it has been observed that in presence of needle wobble, at low and medium lifts hole-to-hole differences are observed. Also, some holes exhibits swirling flow which affects the near nozzle jet structure, the liquid mass distribution and the mass flow rate, resulting in potential spray modifications.
机译:众所周知,柴油燃料喷射器的内部结构会对喷嘴流量和从每个孔中喷出的喷雾产生重大影响。在本文中,研究了在针的标称(轴向)和实际(包括离轴横向运动)工作条件下柴油机喷油器内部的三维瞬态流动结构。使用基于流体体积比(VOF)方法的混合模型的两相流表示法,在商业CFD代码CONVERGE中进行了数值模拟。在代码中可以轻松处理移动边界,该代码在运行时使用割格笛卡尔笛卡尔方法生成网格。首先,已经进行了网格敏感性研究并讨论了网格需求。然后讨论了动针计算的结果。针头运动的实际径向扰动(摆动)已用于分析其对喷嘴流动特性的影响。针的径向运动基于在阿贡国家实验室收集的高速X射线相衬成像。提出了不同类型的摆动,并将结果与​​名义轴向运动行为进行了比较。讨论并量化了孔与孔之间的差异。在喷嘴的囊区域中观察到复杂的流动结构,并提供了从每个孔出现的不同流动结构的解释。从这项工作中,已经观察到在存在针头摆动的情况下,在中低扬程下观察到孔与孔之间的差异。而且,一些孔表现出旋流,这会影响附近的喷嘴射流结构,液体质量分布和质量流率,从而导致潜在的喷雾改性。

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