Effects of carbon dioxide on the combustion characteristics of the laminar premixed n-heptane/air flames at elevated pressures

层流 二氧化碳 燃烧 庚烷 环境科学 材料科学 化学 机械 热力学 物理 有机化学
作者
Wenlong Dong,Tao Jin,Bingbing Qiu,Huaqiang Chu
出处
期刊:Journal of The Energy Institute [Elsevier BV]
卷期号:99: 127-136 被引量:14
标识
DOI:10.1016/j.joei.2021.08.011
摘要

In this paper, the laminar combustion characteristics of n-heptane/carbon dioxide/air flames are numerically investigated by using the Chemkin/Premix Code and LLNL v3.1 mechanism. The equivalence ratios vary from 0.8 to 1.4 at the initial temperature of 298 K. The initial pressure is set as 1, 2, 5, 10, 20 atm. Laminar burning velocity (LBV), adiabatic flame temperature (AFT), net heat release rate (NHRR) and the mole fractions of H, O, OH, CO at stoichiometric ratio are studied with carbon dioxide (CO 2 ) addition. Meanwhile, temperature sensitivity and rate of production (ROP) are analyzed. In addition, the physical and chemical effects of CO 2 are investigated by introducing fictitious carbon dioxide (FCO 2 ).The results show that with the increase of initial pressures, LBV decreases, AFT and NHRR increase, the peaks of intermediate products such as H, O, OH and CO decrease. The promoting effect of elementary reactions on temperature is greatly enhanced, while the inhibiting effect is slightly enhanced. With the increase of CO 2 doping ratios, LBV, AFT and NHRR decrease, while the peaks of H, O, OH, CO increase first and then decrease. The promoting and inhibiting effects of elementary reactions on temperature are enhanced. Both physical and chemical effects of CO 2 inhibit the combustion of n-heptane, where physical effect dominates. The total ROPs of H, O, OH change from consuming to producing, while the total ROP of CO is opposite. • The combustion characteristics of C 7 H 16 /CO 2 /air flame at elevated pressure had been investigated. • The chemical and physical effects of CO 2 inhibited LBV, AFT and NHRR. • Increasing pressure inhibited LBV, but promoted AFT and NHRR. • ROP and temperature sensitivity were analyzed to study the reaction effect for combustion characteristics.
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