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Operability of Fuel/Oxidizer-Flexible Combustor Holding Hydrogen- Enriched Partially Premixed Oxy-Flames Stabilized over a Perforated Plate Burner

机译:燃料/氧化剂 - 柔性燃烧器的可操作性保持富含氢气的部分预混合的氧火焰,稳定在穿孔板燃烧器上

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摘要

This work investigates the effects of fuel and oxidizer flexibility on the operability of a partially premixed combustor stabilizing H-2-enriched compressed natural gas (CNG) oxy-flames over a perforated plate burner. Three sets of experiments were conducted over ranges of equivalence ratio (Phi), oxygen fraction (OF), and hydrogen fraction (HF). The first set was performed at OF = 29% to investigate the effects of H-2 addition (HFs: 0.0%, 10%, 20%, and 30%) on the combustor operability and flame macrostructure over ranges of (I) and inlet flow Reynolds (Re). In the second set, the experiments of the first set were repeated for different OFs (29%, 32%, and 36%) to study the effects of oxidizer flexibility on combustor operability and visual flame appearance. In the last set, the combustor operability was examined near stoichiometry (Phi = 0.85) over ranges of OF, HF, and Re. At Re = 1481 and OF = 29%, the lean blowout limit was extended from Phi of 0.55 for HF of 0.0% to Phi of 0.38, 0.35, and 0.30 for HFs of 10%, 20%, and 30%, respectively. However, the flashback limit was narrowed with H2 addition at Re = 1481 and OF = 32% from Phi = 1.1 for HF = 0.0 to Phi = 1.05 and 1.0 for HF of 20% and 30%, respectively. The flame becomes whiter, shorter, more intense within the inner cone and more stable with strong attachment to the plate with H-2 addition. Flames of similar Phi and OF, i.e., similar adiabatic flame temperature (T-ad), resulted in similar flame shape. The operability of the combustor near stoichiometry (Phi = 0.85) was not possible outside the range of OF from 25% (at blowout) to 46% (at flashback). The lean blowout limit of the combustor near stoichiometry was extended to lower OFs with H-2 addition. The combustor was able to drop down with the OF from 28% to 25% when the HF was raised from 0.0% to 30% at Phi = 0.85 and Re of 1481. However, it is advised to keep OF below 36% at HF of 30% to avoid flame flashback. The results showed that the flow Re becomes the dominant parameter controlling the combustor blowout limit, and reaction kinetics rates dominate the control of the flashback limit. Having similar inlet flow characteristics, i.e., at fixed Re, T(ad )becomes the most relevant parameter choice when designing a combustion system in order to avoid flame flashback when operated at medium to full load conditions whatever the flame type (partially or fully premixed flames) whatever the stabilization mechanism (swirl or perforated plate).
机译:该工作调查了燃料和氧化器柔韧性对稳定在穿孔板燃烧器上的部分预混燃烧器稳定H-2富含压缩天然气(CNG)氧火焰的可操作性的影响。在等效比(PHI),氧级分(含量)和氢馏分(HF)的范围内进行三组实验。第一个组的= 29%进行,以研究H-2添加(HFS:0.0%,10%,20%和30%)对燃烧器可操作性和火焰宏观结构在(I)和入口的范围内的影响流动雷诺(RE)。在第二组中,对第一种组的实验重复于不同的(29%,32%和36%),以研究氧化剂柔韧性对燃烧器可操作性和视觉火焰外观的影响。在最后一组中,在HF和RE的范围内,在化学计量(PHI = 0.85)附近检查燃烧器可操作性。在RE = 1481和= 29%时,贫井喷限量从0.0%至0.38,0.35和0.30分别为0.38,0.35和0.30分别为0.38,0.35,分别为10%,20%和30%的PHI延伸。然而,倒回限制在RE = 1481的H 2中加入H 2,并且来自PHI = 1.1的HF = 0.0至PHI = 1.05和1.0分别为20%和30%。火焰变得更白,更短,内锥内更强烈,更稳定,具有H-2的板材的强连接。类似PHI的火焰,即类似的绝热火焰温度(T-AD),导致类似的火焰形状。在化学计量(PHI = 0.85)附近的燃烧器的可操作性在25%(井喷)至46%(在闪回时)不可能。在化学计量附近的燃烧器的贫排出极限延伸到H-2加入的较低。当HF在PHI = 0.85和1481的RE为0.0%至30%时,燃烧器能够下降到28%至25%。但是,建议在HF下饲养以下36% 30%以避免火焰闪回。结果表明,流量重新成为控制燃烧器井喷限制的主导参数,反应动力学率主要占据倒装极限的控制。具有类似的入口流特性,即,在固定的RE,T(AD)变为设计燃烧系统时成为最相关的参数选择,以避免在以介质到满载条件的任何火焰类型(部分或完全预混合)时避免火焰闪回火焰)无论稳定机构(旋流或穿孔板)。

著录项

  • 来源
    《Energy & fuels》 |2020年第7期|8653-8665|共13页
  • 作者单位

    Cairo Univ Mech Power Dept Fac Engn Cairo 12613 Egypt;

    Cairo Univ Mech Power Dept Fac Engn Cairo 12613 Egypt;

    Cairo Univ Mech Power Dept Fac Engn Cairo 12613 Egypt;

    King Fand Univ Petr & Minerals KACST TIC CCS & Mech Engn Dept Dhahran 31261 Saudi Arabia;

    King Fand Univ Petr & Minerals KACST TIC CCS & Mech Engn Dept Dhahran 31261 Saudi Arabia;

    Cairo Univ Mech Power Dept Fac Engn Cairo 12613 Egypt;

  • 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

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