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Ignition Delay Measurements of a Methylcyclohexane/02/Ar Mixture over a Wide Range of Conditions

机译:在各种条件下,甲基环己烷/ 02 / Ar混合物的点火延迟测量

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Cycloparaffins may constitute 20% or more by volume of jet fuels. Methylcyclohexane (MCH) is commonly used as a surrogate to represent the monocycloparaffin fraction in jet fuels. In this study, gas phase ignition delay times for a MCH/02/Ar mixture were measured using a single pulse reflected shock tube at the University of Dayton Research Institute (UDRI). In this study, ignition delay measurements covered a pre-ignition temperature of 975-1800 K, at pre-ignition pressures of 2 and 20 atm, at equivalence ratios of 0.5 and 1, and argon concentrations of 93% and 98%. Ignition delay were measured using the end wall pressure and the white light, OH*, CH* chemiluminescence emissions. In addition, experimental data were compared with modeled data using the detail chemical kinetics mechanism for MCH combustion developed by Pitz at al. It. was observed that the equivalence ratio affects the ignition delay time. For the lower argon concentration (Ar = 93%) and higher pressure (P = 20 atm), at lower temperatures (T<~1150 K) ignition delay times were shorter for rich conditions when compared to leaner conditions. An opposite trend was observed at the higher temperatures (T>~1150 K). In addition, longer ignition delay times were observed at the lower pressure (P = 2 atm), and higher argon concentration (Ar = 98%).
机译:环烷基烷烃可以构成20%以上的喷射燃料。甲基环己烷(MCH)通常用作替代物,以表示喷射燃料中的单胞环烷烃级分。在该研究中,使用在代顿研究所(UDRI)的单个脉冲反射的冲击管测量MCH / 02 / Ar混合物的气相点火延迟时间。在该研究中,点火延迟测量覆盖了975-1800k的预点火温度,在2和20atm的预点火压力下,在0.5和1的等效比,氩浓度为93%和98%。使用端壁压力和白光测量点火延迟,哦*,CH *化学发光排放。此外,将实验数据与模型数据进行了比较,该数据使用Pitz在A1的PITZ开发的MCH燃烧的细节化学动力学机制进行了比较。它。观察到等效率影响点火延迟时间。对于较低的氩气浓度(Ar = 93%)和更高的压力(p = 20atm),与稀释条件相比,在较低温度(t <〜1150 k)点火延迟时间较小,富裕的条件较短​​。在较高温度下观察到相反的趋势(t>〜1150 k)。另外,在较低压力(P = 2atm)处观察到更长的点火延迟时间,并且较高的氩浓度(Ar = 98%)。

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