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Blowoff mechanism of two dimensional bluff-body stabilized turbulent premixed flames in a prototypical combustor

机译:原型燃烧室中二维钝体稳定湍流预混火焰的喷出机理

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摘要

Near blowoff dynamics and characteristics of turbulent premixed flames stabilized by a triangular flame holder in the midspan of a rectangular duct were studied using high speed imaging and simultaneous particle imaging velocimetry and OH planar laser-induced fluorescence. Near blowoff dynamics mani?fested by the onset of asymmetric vortex shedding and local extinction were observed. It has been pro?posed that a partial or total extinction of the flame sheet along the shear layers is the major factor that determines the final blowoff event. Observation of flame kernels within the recirculation zone, which under stable conditions contain only combustion products, is further evidence of the shear layer extinc?tion. For a stably burning planar V flame away from blowoff, the flame front envelopes the Kelvin Helm-holtz vortices. Near blowoff, the two flame fronts become more aligned with the flow direction due to reduction in flame speed and interact with the vortices emanating from the shear layer. This overlap induces high local stretch rates that exceed the extinction stretch rates, resulting in local flame extinction along the shear layers. Following extinction, fresh reactants are entrained into and react within the recir?culation zone, with all other parts of the flame extinguished. This flame kernel within the recirculation zone may survive for time scales of about one hundred milliseconds, potentially reigniting the shear layers such that the entire flame is re-established for a short period. This shear layer extinction and re-ignition event can happen several times before final blowoff, which occurs when the flame kernel fails to reignite the shear layers before being extinguished itself, thus leading to global flame extinction.
机译:利用高速成像和同步粒子成像测速技术以及OH平面激光诱导的荧光技术研究了矩形风管中跨中三角燃烧器稳定的湍流预混火焰的近吹气动力学和特性。观察到由不对称涡旋脱落和局部灭绝引起的近溢流动力学。已经提出,火焰片沿剪切层的部分或全部熄灭是决定最终吹扫事件的主要因素。在稳定条件下仅包含燃烧产物的再循环区内观察到火焰核,是剪切层消光的进一步证据。为了使稳定的平面V火焰远离吹散,火焰前部包围了Kelvin Helm-holtz涡流。在吹气附近,由于火焰速度降低,两个火焰前沿变得与流动方向更加对齐,并且与剪切层产生的涡旋相互作用。这种重叠会导致超过熄灭拉伸速率的高局部拉伸速率,导致沿剪切层的局部火焰熄灭。熄灭后,新鲜的反应物被夹带到再循环区内并在其中发生反应,而火焰的所有其他部分均被熄灭。再循环区内的火焰核可存活约100毫秒的时间,可能会重新点燃剪切层,从而在短时间内重新建立整个火焰。这种剪切层的熄灭和重燃事件可能在最终吹灭之前发生了好几次,这是在火焰核在熄灭自身之前未能重新点燃剪切层而导致整体火焰熄灭时发生的。

著录项

  • 来源
    《Combustion and Flame》 |2011年第7期|p.1358-1371|共14页
  • 作者单位

    Department of Mechanical Engineering. University of Connecticut, Storrs, CT 06269, United States;

    Spectral Energies, LLC, 5100 Springfield Street, Suite 301, Dayton, OH 45431, United States;

    Department of Mechanical Engineering. University of Connecticut, Storrs, CT 06269, United States;

    Department of Mechanical Engineering. University of Connecticut, Storrs, CT 06269, United States;

    Department of Mechanical Engineering. University of Connecticut, Storrs, CT 06269, United States;

  • 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

    bluff-body flames; blowoff dynamics; piv-plif; local extinction;

    机译:钝体火焰;吹散动力学;皮夫瓣;局部消光;
  • 入库时间 2022-08-18 00:12:16

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