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Characterization of Internal Flow of Intersecting Hole Nozzle for Diesel Engines

机译:柴油发动机交叉孔喷嘴内部流动的特征

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The intersecting hole nozzle, in which each orifice is formed by the converging of two or more child-holes, was proposed for the purpose of enhancing the internal turbulence in diesel nozzle, so as to promote the fuel atomization. In this paper, the internal flow characteristics of a cylindrical hole nozzle and two intersecting hole nozzles are studied by CFD simulation. The results show that, compared with conventional cylindrical hole nozzle, the internal flow of intersecting hole nozzles is characterized with slower rate of pressure decrease in the hole, none or very little cavitation, as well as about 20% to 30% higher discharge coefficients, especially under conditions of high injection pressure. Additionally, the setting of the blind hole as a disturbing domain in the intersecting hole nozzle results in more perturbation for internal flow, which will be beneficial for fuel atomization.
机译:为了提高柴油喷嘴中的内部湍流,提出了通过两个或更多个子孔的会聚形成的交叉孔喷嘴,以便提高柴油喷嘴中的内部湍流,以促进燃料雾化。本文通过CFD模拟研究了圆柱形孔喷嘴和两个交叉孔喷嘴的内部流动特性。结果表明,与传统的圆柱形孔喷嘴相比,交叉孔喷嘴的内部流量的特征在于孔的压力较慢的压力速率,无空节或非常小的空化,以及约20%至30%的放电系数,特别是在注射压力的条件下。另外,盲孔作为交叉孔喷嘴中的令人不安的结构域的设置导致内部流动的扰动,这将是有益的燃料雾化。

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