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Effect analysis on the macrostructure and static stability limits of oxy-methane flames in a premixed swirl combustor

机译:预混旋流燃烧室中氧甲烷火焰宏观结构和静态稳定性极限的影响分析

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In this study, the changes in macrostructure and static stability limits of CH4/O-2/CO2 flames were recorded experimentally in a premixed swirl combustor over ranges of equivalence ratio (phi) and oxygen fraction (OF: volumetric percentage of O-2 in the O-2-CO2 oxidizer mixture) and under fixed Reynolds (Re) operation to isolate its dynamic effect on flame stabilization. Two-dimensional stability maps are presented as function of phi and OF. The maps are presented on contours of inlet velocity (U-in), combustor power density (PD) and adiabatic flame temperature (T-ad) to correlate these parameters with the stability limits. Selected flames were imaged to analyze the effects of phi, OF, U-in, T-ad and Re on flame stability. The results showed that sustaining premixed oxy-flames is not possible for OF below 29% and above 70%. Reactions kinetic rate is a more relevant parameter than Re for determining flashback limit PD has a leading role for controlling flame stability near the lean blow out limit. U-in is more relevant than Re for controlling flame transition from the inner shear layer to the outer recirculation zone. Increasing Re widens the operability window by shifting blow out limit to leaner conditions. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在这项研究中,实验记录了CH4 / O-2 / CO2火焰的CH4 / O-2 / CO2火焰的宏观结构和静态稳定性极限的变化,其当量比(phi)和氧分数(OF:O-2的体积百分比) O-2-CO2氧化剂混合物)并在固定的雷诺(Re)操作下隔离其对火焰稳定的动态影响。提出了二维稳定性图作为phi和OF的函数。这些图显示在入口速度(U-in),燃烧室功率密度(PD)和绝热火焰温度(T-ad)的轮廓上,以将这些参数与稳定性极限相关联。对选定的火焰进行成像,以分析phi,OF,U-in,T-ad和Re对火焰稳定性的影响。结果表明,对于低于29%和高于70%的OF,不可能维持预混合的氧焰。与Re相比,反应动力学速率是一个更重要的参数,用于确定回火极限。PD在控制稀薄燃烧极限附近的火焰稳定性方面起着主导作用。 U-in比Re更重要的是控制火焰从内部剪切层到外部再循环区的过渡。通过将吹出极限移至更精简的条件,增加Re会扩大可操作性窗口。 (C)2018 Elsevier Ltd.保留所有权利。

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