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Reduced Gasoline Surrogate (Toluene/n-Heptane/iso-Octane) Chemical Kinetic Model for Compression Ignition Simulations

机译:降低汽油替代(甲苯/正庚烷/异辛烷)的压缩点火模拟化学动力学模型

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Toluene primary reference fuel (TPRF) (mixture of toluene, iso-octane and heptane) is a suitable surrogate to represent a wide spectrum of real fuels with varying octane sensitivity. Investigating different surrogates in engine simulations is a prerequisite to identify the best matching mixture. However, running 3D engine simulations using detailed models is currently impossible and reduction of detailed models is essential. This work presents an AramcoMech reduced kinetic model developed at King Abdullah University of Science and Technology (KAUST) for simulating complex TPRF surrogate blends. A semi-decoupling approach was used together with species and reaction lumping to obtain a reduced kinetic model. The model was widely validated against experimental data including shock tube ignition delay times and premixed laminar flame speeds. Finally, the model was utilized to simulate the combustion of a low reactivity gasoline fuel under partially premixed combustion conditions.
机译:甲苯初级参考燃料(TPRF)(甲苯,异辛烷和庚烷的混合物)是一种合适的替代物,以表示具有不同辛烷值敏感性的宽谱的实际燃料。调查发动机模拟中的不同替代物是识别最佳匹配混合物的先决条件。然而,使用详细模型运行3D发动机模拟目前是不可能的,并且还原的详细模型是必不可少的。这项工作介绍了Aramcomech减少的动力学模型,在Abdullah科技大学(KAURY)中开发,用于模拟复杂的TPRF代理混合物。将半解耦方法与物种和反应局部一起使用,以获得减少的动力学模型。该模型被广泛验证了针对实验数据,包括冲击管点火延迟时间和预混合的层状火焰速度。最后,利用该模型在部分预混合的燃烧条件下模拟低反应性汽油燃料的燃烧。

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