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惰性气体(N/CO)对层流预混生物合成气火焰燃烧特性影响的数值模拟

Numerical Simulations of the Influence of Inert Gases (N/CO) on Combustion Characteristics of Laminar-Premixed Biosyngas Flame.

作者信息

Sun Huilai, Li Ruichuan, Huang Mingming, Li Zhi, Xu Jikang

机构信息

School of Mechanical and Automotive Engineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250353, China.

College of Mechanical and Electronic Engineering, Shandong University of Science and Technology, Qingdao 266590, China.

出版信息

ACS Omega. 2021 May 25;6(22):14585-14597. doi: 10.1021/acsomega.1c01729. eCollection 2021 Jun 8.

Abstract

In this work, the influence of different N/CO contents (up to 60% in fuel volume) on combustion features of laminar-premixed CO/CH/H flame with various equivalence ratios (0.6-1.6) at standard conditions was numerically calculated using ANSYS CHEMKIN-PRO with the GRI-Mech 3.0 mechanism. The mole fraction profiles of the major species and the rate of production of dominant elementary reactions in the flames of CO/CH/H/N/CO/air were obtained. The effect of inert gas addition on the formation of NO , H, O, and OH was analyzed, and the sensitivity coefficient of the active radical mole fraction was obtained. The results suggest that the addition of inert gas of the fuel mixture with various equivalence ratios reduces laminar burning velocity and adiabatic temperature, which have always had a good positive correlation and the maximum peak point shifted left. CO has obvious inhibitory effect on the formation of NO by reducing the amount of O radicals and obstructing the conduct of the reaction of NNH + O ⇔ NH + NO, but it promotes the formation of NO mainly through the reaction HO + NO ⇔ NO + OH. The reactions H + O + HO ⇔ HO + HO, H + O ⇔ O + OH, and OH + CO ⇔ H + CO are three very important reactions for the molar fractions of H, O, and OH that decrease significantly with an increase of inert gas concentration.

摘要

在这项工作中,使用带有GRI-Mech 3.0反应机理的ANSYS CHEMKIN-PRO,对标准条件下不同N/CO含量(燃料体积中高达60%)对具有各种当量比(0.6 - 1.6)的层流预混CO/CH/H火焰燃烧特性的影响进行了数值计算。获得了CO/CH/H/N/CO/空气火焰中主要物种的摩尔分数分布以及主要基元反应的生成速率。分析了添加惰性气体对NO、H、O和OH生成的影响,并获得了活性自由基摩尔分数的灵敏度系数。结果表明,添加具有各种当量比的燃料混合物中的惰性气体会降低层流燃烧速度和绝热温度,它们一直具有良好的正相关性且最大峰值点向左移动。CO通过减少O自由基的量并阻碍NNH + O ⇔ NH + NO反应的进行,对NO的形成有明显的抑制作用,但它主要通过HO + NO ⇔ NO + OH反应促进NO的形成。反应H + O + HO ⇔ HO + HO、H + O ⇔ O + OH和OH + CO ⇔ H + CO是对于H、O和OH摩尔分数随惰性气体浓度增加而显著降低的三个非常重要的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10be/8190912/dbd4cfe3b1b5/ao1c01729_0002.jpg

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