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A multi-dimensional quasi-discrete model for the analysis of Diesel fuel droplet heating and evaporation

机译:多维准离散模型,用于分析柴油燃料滴的加热和蒸发

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摘要

A new multi-dimensional quasi-discrete model is suggested and tested for the analysis of heating and evaporation of Diesel fuel droplets. As in the original quasi-discrete model suggested earlier, the components of Diesel fuel with close thermodynamic and transport properties are grouped together to form quasi-components. In contrast to the original quasi-discrete model, the new model takes into account the contribution of not only alkanes, but also various other groups of hydrocarbons in Diesel fuels; quasi-components are formed within individual groups. Also, in contrast to the original quasi-discrete model, the contributions of individual components are not approximated by the distribution function of carbon numbers. The formation of quasi-components is based on taking into account the contributions of individual components without any approximations. Groups contributing small molar fractions to the composition of Diesel fuel (less than about 1.5%) are replaced with characteristic components. The actual Diesel fuel is simplified to form six groups: alkanes, cycloalkanes, bicycloalkanes, alkylbenzenes, indanes & tetralines, and naphthalenes, and 3 components C19H34 (tricycloalkane), C13H 12 (diaromatic), and C14H10 (phenanthrene). It is shown that the approximation of Diesel fuel by 15 quasi-components and components, leads to errors in estimated temperatures and evaporation times in typical Diesel engine conditions not exceeding about 3.7% and 2.5% respectively, which is acceptable for most engineering applications. © 2014 Published by Elsevier Ltd. All rights reserved.
机译:提出了一种新的多维准离散模型,并对其进行了测试,以用于分析柴油燃料液滴的加热和蒸发。如先前建议的原始准离散模型中那样,具有近乎热力学和传输特性的柴油燃料成分被组合在一起以形成准成分。与原始的准离散模型相比,新模型不仅考虑了烷烃的贡献,而且还考虑了柴油燃料中各种其他碳氢化合物的贡献。在各个组中形成准分量。而且,与原始的准离散模型相比,单个组件的贡献不能通过碳数的分布函数来近似。准分量的形成是基于考虑到各个分量的贡献而没有任何近似的。对柴油燃料的组成贡献小的摩尔分数的基团(小于约1.5%)被特征性组分取代。实际的柴油燃料被简化为六类:烷烃,环烷烃,双环烷烃,烷基苯,茚满和四氢呋喃和萘,以及3种组分C19H34(三环烷烃),C13H 12(对映异构体)和C14H10(菲)。结果表明,由15种准组分和组分近似的柴油燃料,在典型的柴油发动机工况下,估计温度和蒸发时间的误差分别不超过3.7%和2.5%,这对于大多数工程应用是可以接受的。 ©2014 Elsevier Ltd.出版。保留所有权利。

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