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Numerical Investigation on Combustion Characteristics of Laminar Premixed n-Heptane/Hydrogen/Air Flames at Elevated Pressure

机译:升压升压下层流预混正庚烷/氢气/空气火焰燃烧特性的数值研究

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摘要

The simulation results used the CHEMKIN/PREMIX code to explore the combustion characteristics of in -heptane/hydrogen/air flame. The initial temperature is set as 300 K, the pressures are set as 1, 2, 5, 10, and 20 atm, and the equivalence ratios are set as 0.8–1.4. This research mainly focuses on the characteristic of flame, radicals, and temperature sensitivity of the H radical. The results show that the simulation results maintain the consistency of the experimental results, and other mechanism simulation results and the tendency are same. The changes of laminar burning velocity (LBV) are obvious when hydrogen (H_(2)) is mixed, but the influence of H_(2) addition on adiabatic flame temperature is greater slightly than that on LBV. The sensitivity analysis of the H radical shows that the release of the H radical will compete with in -heptane for oxygen when the H_(2) doping ratio is increased. With the pressure rise, the chemical reaction of H_(2)O strengthens the inhibition of H sensitivity. Hydrogen addition does not change the main reaction of hydrocarbon fuels. H + O_(2) ⇔ O + OH and H_(2)O + M ⇔ H + OH + M are also the exothermic reaction and endothermic reactions, respectively, which are the uppermost.
机译:仿真结果使用Chemkin / PREMIX代码来探讨 N-庚烷/氢气/空气火焰的燃烧特性。初始温度设定为300k,压力设定为1,2,5,10和20atm,等效比设定为0.8-1.4。该研究主要集中在激烈的火焰,自由基和温度敏感性的特征。结果表明,仿真结果保持了实验结果的一致性,以及其他机制模拟结果,趋势是相同的。当混合氢气(H_(2))时,层状燃烧速度(LBV)的变化是显而易见的,但是H_(2)加入绝热火焰温度的影响略高于LBV上的影响。 H基团的敏感性分析表明,当H_(2)掺杂比增加时,H基团的释放将与氧气的氧竞争。随着压力升高,H_(2)O的化学反应强调H敏感性的抑制作用。氢添加不会改变烃燃料的主要反应。 H + O_(2)△O + OH和H_(2)O + M⇔H+ OH + M也分别是放热反应和吸热反应,这是最上面的。

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  • 来源
    《Energy & fuels》 |2020年第11期|14768-14775|共8页
  • 作者单位

    School of Energy and Environment Anhui University of Technology;

    School of Energy and Environment Anhui University of Technology;

    School of Energy and Environment Anhui University of Technology;

    School of Energy and Environment Anhui University of Technology;

    School of Civil Engineering Anhui University of Technology;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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