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Formulation of a one-component fuel lumping model to assess the effects of fuel thermodynamic properties on internal combustion engine mixture preparation and combustion

机译:配制单组分燃料集模型,以评估燃料热力学性质对内燃机混合物制备和燃烧的影响

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A lumping model has been formulated to calculate the thermodynamic properties required for internal combustion engine multidimensional computations, including saturation pressure, latent heat of vaporization, liquid density, surface tension, viscosity, etc. This model consists firstly in reducing the analytical data to a single (i.e., pure) pseudo-component characterized by its molecular weight, critical pressure and temperature, and acentric factor. For a gasoline fuel, the required analytical data are those provided by gas chromatography. For a diesel fuel, the required data are a true boiling point (TBP) distillation curve and the fuel density at a single temperature. This model provides a valuable tool for studying the effects of fuel physical properties upon the behavior of a vaporizing spray in a chamber as well as upon direct injection gasoline and diesel engines using the multidimensional (3D) KMB code. Computations have shown that the vaporization rate may increase up to 13% using a spring gasoline instead of a summer gasoline. Comparisons of engine calculations using the standard KIVA2 DF2 diesel fuel and the new diesel lump called DF1 have shown that the mixture preparation, combustion and emissions are affected by the thermodynamic properties used.
机译:已经配制了一个小型模型以计算内燃机多维计算所需的热力学性能,包括饱和压力,蒸发潜热,液体密度,表面张力,粘度等。该模型首先将分析数据减少到单个(即,纯)伪组分,其特征在于其分子量,临界压力和温度,和龈针因子。对于汽油燃料,所需的分析数据是通过气相色谱提供的分析数据。对于柴油燃料,所需的数据是真正的沸点(TBP)蒸馏曲线和单个温度的燃料密度。该模型提供了一种有价值的工具,用于研究燃料物理性质对腔室中的蒸发喷雾行为的影响以及使用多维(3D)kmb代码的直接喷射汽油和柴油发动机。计算表明,使用弹簧汽油而不是夏季汽油可以增加汽化速率最高可增加13%。使用标准Kiva2 DF2柴油燃料和称为DF1的新柴油块的发动机计算的比较表明,混合物制备,燃烧和排放受到使用热力学性质的影响。

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