生物柴油
柴油
燃烧
替代模型
等价(形式语言)
环境科学
点火系统
动能
工艺工程
柴油机
汽车工程
废物管理
计算机科学
热力学
工程类
化学
数学
物理
有机化学
催化作用
机器学习
离散数学
量子力学
作者
Yuswan Muharam,Danny Leonardi,Alisya P Ramadhania
标识
DOI:10.1051/matecconf/201815603008
摘要
A comparative simulation-based research has been set up to obtain valid kinetic models of the oxidation and combustion of biodiesel surrogate and diesel surrogate, as well as mixed diesel-biodiesel surrogates which is used to predict their ignition delay times (IDT). The research consists of the development of the detailed kinetic models of the oxidation and combustion of biodiesel surrogate and diesel surrogate, the validation of the two models with the corresponding experimental IDT data, the merging and the validation of the two models for mixed diesel-biodiesel surrogates. The biodiesel surrogate kinetic model was validated with the experimental IDT data of methyl 9-decenoate at 20 atm and three equivalence ratios. The diesel surrogate kinetic model was validated with the experimental IDT data of n-hexadecane at the pressure ranging from 2 atm to 5 atm and the equivalence ratio of 1.0. The diesel-biodiesel surrogate kinetic model was validated with the experimental IDT data of real diesel-biodiesel fuels for four compositions and at 1.18 atm. The validation results of all models show that the models and the experiments are in good agreement.
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