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Reduced mechanism generation for methanol-based toluene reference fuel with combined reduction methods

机译:联合还原方法降低甲醇基甲苯参考燃料的机理生成

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摘要

TRF is a very competitive substitute fuel of gasoline, and methanol as a high octane oxygenated fuel has been attracted widely attention. In this study, a new reduced mechanism for methanol-based toluene reference fuel was developed based on the sensitivity analysis (SA), and reaction pathways analysis methods. At first, reduced mechanisms of methanol (including 24 species and 57 elementary reaction) and TRF (including 98 species and 264 elementary reaction) were developed and vilified separately. Then, coupling methanol and TRF reduced mechanisms that have been validated in above section, a new reduced of mechanism for methanol blending with TRF fuel was proposed that including 100 species and 290 elementary reactions. Extensive validations were performed by comparing experimental data of shock tube ignition delay times, flow reactor species profiles, pressure profiles with simulation results. High accuracy is demonstrated in wide ranges of temperature (T=300-2500 K) and equivalence ratio (Phi = 0.375-2), which indicates that the present methanol blending with TRF fuel reduced mechanism can well predict the experimental data.
机译:TRF是一种非常有竞争力的汽油替代燃料,甲醇作为高辛烷值氧化燃料已引起广泛关注。在这项研究中,基于敏感性分析(SA)和反应路径分析方法,开发了一种新的甲醇基甲苯参考燃料的还原机理。首先,分别开发了甲醇(包括24个种类和57个元素反应)和TRF(包括98个种类和264个元素反应)的还原机理。然后,结合上节中已验证的甲醇和TRF还原机理,提出了甲醇与TRF燃料混合的新机理,该机理包括100个种类和290个基本反应。通过将冲击管点火延迟时间,流动反应器种类曲线,压力曲线与仿真结果的实验​​数据进行比较,进行了广泛的验证。在宽温度范围(T = 300-2500 K)和当量比(Phi = 0.375-2)范围内显示出较高的准确性,这表明目前的甲醇与TRF燃料还原机理的共混可以很好地预测实验数据。

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