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首页> 外文期刊>Fuel Processing Technology >Construction of a compact skeletal mechanism for acetone-n-butanol-ethanol (ABE)/diesel blends combustion in engines using a decoupling methodology
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Construction of a compact skeletal mechanism for acetone-n-butanol-ethanol (ABE)/diesel blends combustion in engines using a decoupling methodology

机译:使用去耦方法构建丙酮 - 正丁醇 - 乙醇(ABE)/柴油机燃烧燃烧的紧凑型骨骼机制

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Acetone-n-butanol-ethanol (ABE) has proven to be a promising biofuel rather than n-butanol. Although the detailed and semi-detailed oxidation mechanisms of ABE were proposed, they were not suitable in combustion model with an acceptable timescale. Therefore, a skeletal mechanism for ABE/diesel blends combustion was developed hierarchically with the special emphasis on engine-relevant operating conditions using a decoupling methodology. It composes of 82 species and 247 reactions conformed to the combustion characteristics of nine components which are acetone, n-butanol, ethanol, ABE, diesel and four diesel surrogates including methylcyclohexane, iso-octane, toluene and n-decane. The compact-sized mechanism was benefited from acetone, n-butanol, ethanol and diesel surrogates sharing the same detailed core sub-mechanism, and their extremely simplified fuel-related sub-mechanisms. The mechanism was then fully validated against ignition delay, laminar flame speed, premixed flame species profile, and direct injection compression ignition engine combustion. The results show that the measured combustion behavior in experiments are well reproduced, indicating the current mechanism can be reliably applied to predict the ABE/diesel blends combustion in practical engines.
机译:丙酮-N-丁醇 - 乙醇(ABE)已被证明是有前途的生物燃料而不是正丁醇。尽管提出了ABE的详细和半详细的氧化机制,但它们不适合燃烧模型,旨在可接受的时间尺度。因此,使用去耦方法进行分层逐步强调发动机相关操作条件的骨架机制。它组成82种和247个反应,符合九种组分的燃烧特性,该燃烧特性是丙酮,正丁醇,乙醇,ABE,柴油和四个柴油替代物,包括甲基环己烷,异辛烷,甲苯和N-癸烷。紧凑型机制受益于丙酮,正丁醇,乙醇和柴油替代品共享相同的详细核心子机制及其极其简化的燃料相关子机制。然后将机构完全验证了点火延迟,层状火焰速度,预混火焰物种曲线,以及直接喷射压缩点火发动机燃烧。结果表明,实验中的测量燃烧行为良好,表明当前机构可以可靠地应用于预测实际发动机中的ABE /柴油混合燃烧。

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