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Experimental counterflow ignition temperatures and reaction mechanisms of 1,3-butadiene

机译:1,3-丁二烯的实验逆流着火温度及反应机理

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The ignition temperatures of nitrogen-diluted 1,3-butadiene by heated air in counterflow were experimentally determined for pressures up to 5 atmospheres and pressure-weighted strain rates from 100 to 250 s~(-1). The experimental data were compared with computational results using the mechanism of Laskin et al. [A. Laskin, H. Wang and C.K. Law, Int. J. Chem. Kinet. 32 (10) (2000) 589-614], showing that while the overall prediction is approximately within the experimental uncertainty, the mechanism over-predicts ignition temperature by about 25-40 K, with the differences becoming larger at high pressure/low temperature region. Sensitivity analyses for the near-ignition states were performed for both reactions and diffusion, which identified the importance of H_2/CO chain reactions, three 1,3-butadiene reaction pathways, and the binary diffusion between 1,3-butadiene and N_2 on ignition. The detailed mechanism, consisting of 94 species and 614 reactions, was then simplified to a skeletal mechanism consisting of 46 species and 297 reactions by using a new reduction algorithm combining directed relation graph and sensitivity analysis. The skeletal mechanism was further simplified to a 30-step reduced mechanism by using computational singular perturbation and quasi-steady-state assumptions. Both the skeletal and reduced mechanisms mimic the performance of the detailed mechanism with good accuracy in both homogeneous and heterogeneous systems.
机译:实验确定了最高5个大气压的压力和100-250 s〜(-1)的压力加权应变速率下,逆流加热空气稀释氮气稀释的1,3-丁二烯的着火温度。使用Laskin等人的机制将实验数据与计算结果进行了比较。 [一个。 Laskin,H.Wang和C.K.法律,国际J.化学Kinet。 32(10)(2000)589-614],表明虽然总体预测大约在实验不确定性范围内,但该机制将点火温度高估了约25-40 K,在高压/低温下差异会变得更大区域。对反应和扩散均进行了近点火状态的敏感性分析,确定了H_2 / CO链反应,三个1,3-丁二烯反应路径以及1,3-丁二烯与N_2之间在点火时的二元扩散的重要性。 。然后,通过使用直接关系图和敏感性分析相结合的新约简算法,将由94个物种和614个反应组成的详细机理简化为由46个物种和297个反应组成的骨架机理。通过使用计算奇异摄动和拟稳态假设,将骨骼机制进一步简化为30步精简机制。骨架机制和简化机制在同质和异质系统中都以良好的精度模拟详细机制的性能。

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