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A Study of Flame Spread Over Convectively Ignited SolidFuel in a Sudden-Expansion Combustor

机译:在突然膨胀的燃烧器中,对火焰蔓延的火焰分布在突发 - 膨胀燃烧室中

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The flame spread over a convectively ignited solid fuel (PMMA) slab in a sudden-expansion combustor is studied experimentally. The PMMA slab, which is installed downstream of the backward-facing step in the sudden-expansion combustor, is ignited convectively under the oxidizing stream of u_0 = 22 m/s and T_0 = 810°C supplied by combustion of LPG in a vitiator. The process of flame spread during the ignition transient is recorded by a high-speed CMOS camera at 1000 fps. Corresponding flow visualization and PIV (Particle Image Velocimetry) techniques are also established to analyze the vortical structures. The mechanisms of this specific flame spread process are attempted to be clarified from the perspective of flame-vortex interactions. Instead of being ignited near the backward-facing step, ignition was observed to occur at the downstream end. The higher temperature at the downstream significantly decreases the characteristic reaction time and small eddies increases the mixing. Three phases of flame spread during ignition are identified during the ignition transient. In Phase 1, the flame spread is dominated by the characters of boundary layer and partial premixed flame. It also behaves as a buffer zone to provide adequate energy for the upstream flame spread. In Phase 2, the impinging of vortices as well as the character of premixed flame dominated the reattachment zone. The upstream propagating flames experience periodical extinction-reignition cycles due to the high stress from the impinging of vortex. At last in Phase 3, the incoming large vortices roll up portions of heat back to their upstream coherent vortices and ignite the shear layer. The shear layer ignition possesses the characteristic of a diffusion flame.
机译:在实验中研究了在突然膨胀的燃烧器中对定性点燃的固体燃料(PMMA)板铺展的火焰。在突然膨胀燃烧器中安装在突然膨胀燃烧器的后向步骤的下游的PMMA板在U_0 = 22m / s的氧化流下,通过燃烧器中的LPG燃烧,在氧化氧化料流下点燃。点火瞬态期间的火焰扩散的过程由1000 fps的高速CMOS相机记录。还建立了相应的流量可视化和PIV(粒子图像速度法)技术以分析涡流结构。试图从火焰涡旋相互作用的角度澄清这种特定火焰扩展过程的机制。代替在靠近朝下的步骤附近点燃,观察到在下游端发生点火。下游的较高温度显着降低了特征反应时间,小漩涡增加了混合。在点火瞬态期间鉴定出点火期间的三个阶段的火焰扩散。在阶段1中,火焰展开由边界层和部分预混合火焰的特征主导。它表现为缓冲区,为上游火焰传播提供足够的能量。在阶段2中,撞击涡旋以及预混火焰的特征主导了重新连接区域。上游传播火焰由于涡旋的撞击的高应力而经历了周期性的消光 - 重新开始循环。最后在第3阶段,将大型涡流卷起热量的部分回到其上游相干涡流并点燃剪切层。剪切层点火具有扩散火焰的特性。

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