A NEW DOUBLE-SLIT CURVED WALL-JET (CWJ) BURNER FOR STABILIZING TURBULENT PREMIXED AND NON-PREMIXED FLAMES

M. S. Mansour, S. Chung
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Abstract

A novel double-slit curved wall-jet (CWJ) burner was proposed and employed, which utilizes the Coanda effect by supplying fuel and air as annular-inward jets over a curved surface. We investigated the stabilization characteristics and structure of methane/air, and propane/air turbulent premixed and non-premixed flames with varying global equivalence ratio,  , and Reynolds number, Re. Simultaneous time-resolved measurements of particle image velocimetry and planar laser-induced fluorescence of OH radicals were conducted. The burner showed potential for stable operation for methane flames with relatively large fuel loading and overall rich conditions. These have a non-sooting nature. However, propane flames exhibit stable mode for a wider range of equivalence ratio and Re. Mixing characteristics in the cold flow of non-premixed cases were first examined using acetone fluorescence technique, indicating substantial transport between the fuel and air by exhibiting appreciable premixing conditions. PIV measurements revealed that velocity gradients in the shear layers at the boundaries of the annular jets generate the turbulence, enhanced with the collisions in the interaction jet, IJ, region. Turbulent mean and rms velocities were influenced significantly by Re and high rms turbulent velocities are generated within the recirculation zone improving the flame stabilization in this burner. Premixed and non-premixed flames with high equivalence ratio were found to be more resistant to local extinction and exhibited a more corrugated and folded nature, particularly at high Re. For flames with low equivalence ratio, the processes of local quenching at IJ region and of re-ignition within merged jet region maintained these
一种用于稳定湍流预混和非预混火焰的新型双缝弯曲壁面射流燃烧器
提出并应用了一种新型的双缝弯曲壁面射流燃烧器(CWJ),该燃烧器利用康达效应,在弯曲壁面上以环形向内射流的形式提供燃料和空气。研究了甲烷/空气、丙烷/空气湍流预混和非预混火焰的稳定特性和结构,研究了不同的整体等效比、总粒径大小、总粒径大小、总粒径大小、总粒径大小、总粒径大小、总粒径大小、总粒径大小、总粒径大小、总粒径大小、总粒径大小、总粒径大小、总粒径大小等参数。该燃烧器在燃料负荷较大、总体条件丰富的甲烷火焰中具有稳定运行的潜力。这些具有不熏烟的性质。然而,丙烷火焰在更大的等效比和Re范围内表现出稳定模式。首先使用丙酮荧光技术检测了非预混情况下冷流中的混合特性,表明通过表现出可观的预混条件,燃料和空气之间存在大量的传输。PIV测量结果显示,环形射流边界剪切层的速度梯度产生了湍流,并随着相互作用射流IJ区域的碰撞而增强。湍流平均速度和均方根速度受Re影响显著,在再循环区内产生了高均方根湍流速度,提高了燃烧器的火焰稳定性。高等效比的预混和非预混火焰更能抵抗局部熄灭,表现出更多的波纹和折叠性质,特别是在高Re时。对于低等效比的火焰,IJ区域的局部淬火和合并射流区域的重燃过程保持了这些特征
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