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Influence of ferrocene addition to a laminar premixed propene flame: Laser diagnostics, mass spectrometry and numerical simulations

机译:二茂铁添加到层流预混丙烯火焰中的影响:激光诊断,质谱和数值模拟

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The detailed influence of ferrocene in a low-pressure, fuel-rich, laminar, premixed propene/oxygen/ argon flat flame was investigated experimentally using molecular beam sampling mass spectrometry (MBMS), laser-induced fluorescence (LIF), and compared to numerical simulations. MBMS was applied to analyze the species profiles of important intermediates in the flames with and without ferrocene doping. The concentration profile of iron atoms was measured with absorption sensitive LIF, which provides absolute number densities without additional calibrations. The flame temperature was obtained by two-line OH LIF measurements. One dimensional numerical simulations of the flames using detailed models from the literature were performed and the modeling results are compared with the experimental measurements. The iron measurements show reasonable agreement with the numerical simulation, while some discrepancies were found at larger heights. The MBMS measurements show a decrease in flame velocity when ferrocene was added, which was not provided by the model.
机译:使用分子束采样质谱(MBMS),激光诱导荧光(LIF)通过实验研究了二茂铁在低压,富燃料,层流,预混合的丙烯/氧气/氩气扁平火焰中的详细影响模拟。 MBMS用于分析有和没有二茂铁掺杂的火焰中重要中间体的物种分布。铁原子的浓度曲线是使用吸收敏感的LIF测量的,无需额外校准即可提供绝对数密度。火焰温度通过两线OH LIF测量获得。使用文献中的详细模型进行了火焰的一维数值模拟,并将模拟结果与实验测量结果进行了比较。铁的测量结果与数值模拟显示出合理的一致性,而在较大的高度处发现了一些差异。 MBMS测量结果显示,添加二茂铁时火焰速度降低,但模型并未提供。

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