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Study of Liquid and Vapor Phases of a GDI Spray

机译:GDI喷雾液相和气相的研究

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Gasoline direct injection (GDI) systems have become dominant in passenger cars due to their flexibility in the fuel managing and the consequent advantages in the fuel economy. With the increasingly stringent emission regulations and concurrent requirements for enhanced engine thermal efficiency, a comprehensive characterization of the fuel spray behavior has become essential. Characteristics of free-evolving and impinging spray of iso-octane fluid, using a GDI injector from the Engine Combustion Network (ECN) circuit, were investigated by a hybrid Mie-scattering and schlieren optical technique. The experiments provided the spatial distribution and time-resolved evolution of the free, as well as the post-impingement, characteristics of the spray under various operating conditions. A customized processing algorithm, able to catch the contours of both liquid and vapor/atomized phases, was used to extract the diffusion and evaporation parameters that characterized the fuel spray. Aim of this study is a detailed understanding of a GDI spray evolution under engine-like conditions, by studying both the liquid and the vapor phases as the ambient and injection conditions varies in a controlled environment.
机译:汽油直喷(GDI)系统由于在燃料管理方面的灵活性以及由此带来的燃料经济性优势,已在乘用车中占主导地位。随着日益严格的排放法规和对提高发动机热效率的同时要求,对燃油喷雾行为的全面表征已变得至关重要。通过混合Mie散射和schlieren光学技术,使用了来自发动机燃烧网络(ECN)电路的GDI喷射器,研究了异辛烷流体的自由演化和撞击喷雾特性。实验提供了在各种操作条件下喷雾的自由度以及撞击后特性的空间分布和时间分辨演化。使用能够捕获液相和气相/雾化相轮廓的定制处理算法来提取表征燃料喷雾的扩散和蒸发参数。这项研究的目的是通过研究在受控环境中环境和喷射条件变化时的液相和气相,从而详细了解发动机条件下的GDI喷雾的演变。

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