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Influence of Component Proportion on Multi-Component Surrogate Fuel Spray Characteristics under Subcooled and Superheated Conditions

机译:在过冷和过热条件下组分比例对多组分替代燃料喷射特性的影响

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Good comprehension of multi-component fuel spray behavior is essential for the improved performance of GDI engines. In this study, the spray characteristics of three distinct multi-component surrogate fuels with various proportions of n-pentane, iso-octane, and n-decane were investigated using multiple diagnostics including macroscopic imaging, planar laser Mie-scattering, and phase doppler interferometry (PDI). These surrogate fuels were used to mimic different distillation characteristics of regular unleaded gasoline with different vaporization behaviors. Test measurements show that under subcooled test conditions, the spray geometry is mainly influenced by dynamic viscosity. On the contrary, under superheated test conditions, spray geometry is controlled by the specific component of fuel which has the highest vapor pressure. A triangular methodology is created to evaluate the influence of component proportion on spray characteristics. A hierarchical model is then developed to illustrate the macroscopic behavior of multi-component fuel spray which explains well the effect of each component's proportion on the overall spray characteristics.
机译:对多组分燃料喷射行为的良好理解对于GDI发动机的性能提高至关重要。在该研究中,使用多种诊断研究了三种不同多组分替代燃料的三种不同多组分替代燃料的喷射特性,包括多个诊断,包括宏观成像,平面激光MIE散射和相位多普勒干涉法(PDI)。这些替代燃料用于模仿具有不同汽化行为的常规无铅汽油的不同蒸馏特性。测试测量表明,在过冷测试条件下,喷雾几何形状主要受动态粘度的影响。相反,在过热的试验条件下,喷雾几何形状由具有最高蒸气压的燃料的特定成分来控制。创建三角形方法以评估组分比例对喷雾特性的影响。然后开发了一种层级模型以说明多分量燃料喷雾的宏观行为,其解释了每个组分比例对整体喷射特性的影响。

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