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Investigation of the impact of imposed air inlet velocity oscillations on the formation and oxidation of soot using simultaneous 2-Colour-TIRE-LII

机译:同时使用2-Colour-TIRE-LII研究施加的进气速度振荡对烟灰形成和氧化的影响

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摘要

The response of non-premixed swirling flames to acoustic perturbations at various frequencies (0-350 Hz) and the impact of imposed air inlet velocity oscillations on the formation and oxidation of soot are investigated. The results obtained from these flames are of special interest for "rich-quenched-lean" (RQL) combustion concepts applied in modern gas turbines. In RQL combustion, the fuel is initially oxidized by air under fuel-rich conditions in a first stage followed by a fuel-lean combustion step in a second stage. To mimic soot formation and oxidation in RQL combustion, soot particle measurements in highly turbulent, non-premixed swirling natural gas/ethylene-confined flames at imposed air inlet velocity oscillations are performed using simultaneous 2-Colour-Time-Resolved-Laser-Induced Incandescence (simultaneous 2-Colour-TIRE-LII). The latter technique is combined with line-of-sight averaged OH*-chemiluminescence imaging, measurements of the velocity field by high-speed particle imaging velocimetry under reactive combustion conditions and measurements of the mean temperature field obtained by a thermocouple. A natural gas/ethylene mixture (I broken vertical bar = 1.56, 42 % C2H4, 58 % natural gas, P (th) = 17.6 kW at atmospheric pressure) is used as a fuel, which is oxidized by air under fuel-rich conditions in the first combustion chamber.
机译:研究了非预混涡旋火焰对各种频率(0-350 Hz)下的声扰动的响应,以及进气速度振荡对烟灰形成和氧化的影响。从这些火焰中获得的结果对于现代燃气轮机中应用的“浓淬火稀”(RQL)燃烧概念特别有意义。在RQL燃烧中,首先在第一阶段中在富燃料条件下将空气氧化为燃料,随后在第二阶段中为贫燃料燃烧步骤。为了模拟RQL燃烧中的烟尘形成和氧化,使用同时进行2色时间分辨的激光诱导的白炽灯进行强湍流,未预混合的天然气/乙烯受限火焰中的烟尘颗粒测量,并施加进气速度振荡(同时使用2色轮胎LII)。后一种技术与视线平均OH *化学发光成像相结合,在反应性燃烧条件下通过高速粒子成像测速仪对速度场进行测量,并通过热电偶获得平均温度场。天然气/乙烯混合物(垂直折线I = 1.56,C2H4 42%,天然气58%,大气压下P(th)= 17.6 kW)用作燃料,在富燃料条件下被空气氧化在第一燃烧室。

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  • 来源
    《Applied physics》 |2015年第4期|777-795|共19页
  • 作者单位

    KIT, Engler Bunte Inst, Div Combust Technol, D-76131 Karlsruhe, Germany;

    KIT, Inst Chem Technol & Polymer Chem, D-76131 Karlsruhe, Germany;

    KIT, Engler Bunte Inst, Div Combust Technol, D-76131 Karlsruhe, Germany;

  • 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
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 03:08:05

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