首页> 外文会议>ASME/JSME Thermal Engineering Joint Conference >UNSTEADY BEHAVIOR OF LOCALLY STRAINED DIFFUSION FLAMES AFFECTED BY CURVATURE AND PREFERENTIAL DIFFUSION
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UNSTEADY BEHAVIOR OF LOCALLY STRAINED DIFFUSION FLAMES AFFECTED BY CURVATURE AND PREFERENTIAL DIFFUSION

机译:受曲率和优先扩散影响的本地紧张扩散火焰的不稳定行为

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Experimental and numerical studies are made of transient H{sub}2/N{sub}2 - air counterflow diffusion flames unsteadily strained by an impinging micro jet. Two-dimensional temperature measurements by laser Rayleigh scattering method and numerical computations taking into account detailed chemical kinetics are con-ducted paying attention to transient local extinction and reignition in relation to the unsteadiness, flame curvature and preferential diffusion effects. The results are as follows. (1) Transient local flame extinction is observed where the micro jet impinges. But, the transient flame can survive instantaneously in spite of quite high stretch rate where the steady flame cannot exist. (2) Reignition is observed after the local extinction due to the micro air jet impingement. The temperature after reignition be-comes significantly higher than that of the original flame. This high temperature is induced by the concentration of H{sub}2 species due to the preferential diffusion in relation to the concave curvature. The predicted behaviors of the local transient extinction and reignition are well confirmed by the experiments. (3) The reignition is induced after the formation of combustible premixed gas mixture and the consequent flame propagation. (4) The reignition is hardly observed after the extinction by micro fuel jet impingement. This is due to the dilution of H{sub}2 species induced by the preferential diffusion in relation to the convex curvature. (5)The maximum flame temperature cannot be rationalized by the stretch rate but changes widely depending on the unsteadiness and the flame curvature in relation with preferential diffusion.
机译:实验和数值研究是由瞬态ħ{子} 2 / N {子} 2 - 空气逆流扩散火焰不稳由撞击微射流应变。二维温度测量通过激光瑞利散射法和数值计算考虑到详细的化学动力学是CON-涵道注意短暂局部熄灭和重燃相对于不稳定,火焰曲率和优惠的扩散效应。结果如下。 (1)瞬时局部火焰熄灭观察其中微射流撞击。但是,短暂的火焰可以尽管相当高拉伸率,其中稳定的火焰不能存在的瞬间生存。 (2)重燃在本地消光后观察到由于空气的微射流冲击。重燃后的温度是-来比原火焰的显著较高。这种高温的H {子} 2个物种的浓度由于在相对于凹曲率选择性扩散引起的。当地短暂熄灭和重燃的预测行为深受实验所证实。 (3)再点火是可燃预混合气体混合物的形成和随后的火焰传播后诱导。 (4)再点火是由微型燃料射流冲击的消光后几乎没有观察到。这是由于至H {子} 2种关系诱导由优先扩散到凸曲率的稀释。 (5)最高火焰温度不能被拉伸率合理化但变化很大,取决于不稳定并与选择性扩散关系火焰曲率。

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