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The development and experimental validation of a reduced ternary kinetic mechanism for the auto-ignition at HCCI conditions, proposing a global reaction path for ternary gasoline surrogates

机译:在HCCI条件下自动点火的降低三元动力学机理的开发和实验验证,提出了三元汽油代用品的全局反应路径

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摘要

To acquire a high amount of information of the behaviour of the Homogeneous Charge Compression Ignition (HCCI) auto-ignition process, a reduced surrogate mechanism has been composed out of reduced n-heptane, iso-octane and toluene mechanisms, containing 62 reactions and 49 species. This mechanism has been validated numerically in a OD HCCI engine code against more detailed mechanisms (inlet temperature varying from 290 to 500 K, the equivalence ratio from 0.2 to 0.7 and the compression ratio from 8 to 18) and experimentally against experimental shock tube and rapid compression machine data from the literature at pressures between 9 and 55 bar and temperatures between 700 and 1400 K for several fuels: the pure compounds n-heptane, iso-octane and toluene as well as binary and ternary mixtures of these compounds. For this validation, stoichiometric mixtures and mixtures with an equivalence ratio of 0.5 are used. The experimental validation is extended by comparing the surrogate mechanism to experimental data from an HCCI engine. A global reaction pathway is proposed for the auto-ignition of a surrogate gasoline, using the surrogate mechanism, in order to show the interactions that the three compounds can have with one another during the auto-ignition of a ternary mixture. (C) 2008 Elsevier B.V. All rights reserved.
机译:为了获得大量有关均质压缩点火(HCCI)自燃过程行为的信息,由还原的正庚烷,异辛烷和甲苯机理组成了还原的替代机理,包含62个反应和49个反应种类。此机制已在OD HCCI发动机代码中针对更详细的机制(进气温度从290到500 K,当量比从0.2到0.7以及压缩比从8到18)进行了数值验证,并在实验上针对实验的减震管和快速文献中提供的压缩机数据是在9至55 bar的压力和700至1400 K的温度下对几种燃料:纯化合物正庚烷,异辛烷和甲苯,以及这些化合物的二元和三元混合物。为了进行验证,使用了化学计量混合物和当量比为0.5的混合物。通过将替代机制与HCCI引擎的实验数据进行比较,扩展了实验验证。为了显示三种化合物在三元混合物自动点火过程中彼此之间可能存在的相互作用,提出了一种使用替代机理自动替代汽油的整体反应途径。 (C)2008 Elsevier B.V.保留所有权利。

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