首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >EFFECT OF QUARL ON N2- AND CO2-DILUTED METHANE OXY-FLAMES STABILIZED BY AN AXIAL-PLUS-TANGENTIAL SWIRLER
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EFFECT OF QUARL ON N2- AND CO2-DILUTED METHANE OXY-FLAMES STABILIZED BY AN AXIAL-PLUS-TANGENTIAL SWIRLER

机译:QUARL对轴向切向旋流稳定的N2-和CO2稀释的甲烷氧的影响

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Stabilization of nearly stoichiometric CO_2- and N_2-diluted premixed methane/oxygen swirling flames is investigated in an atmospheric test rig equipped with an axial-plus-tangential swirler exhausting in a cylindrical injection tube eventually ended by a diverging quart The investigated flames are stabilized aerodynamically away from the solid elements of the com-bustor without the help of any central bluff body in the injector. Theflowrates through the axial and tangential slits of the swirler can be adjusted separately. Effects of swirl and quarl angle on the flowfield and flame shape are analyzed. Laser tomography on small oil particles reveals that fuel, oxidizer and diluents injected in separated channels are well mixed at the injector outlet. Velocimetry measurements and flame images show that the axial-plus-tangential swirler allows a flexible control of the flame leading edge position with respect to the injector outlet. For a fixed injector geometry with a given quarl angle and swirl number, it is found that N_2- and CO_2-diluted flames feature the same topology if the injected combustible mixtures feature the same adiabatic flame temperature, while they may feature different bulk injection velocities and laminar burning velocities. The operability range of well stabilized CO_2-diluted flames is however reduced.
机译:在配备有轴向 - 加离线的大气试验台中研究了几乎化学计量的CO_2-和N_2-稀释的甲烷/氧旋流火焰的稳定化,最终由圆柱形注射管中排出的轴向 - 加离线旋转旋转旋转旋转旋转,所以调查的火焰稳定在空气动力学上稳定远离Com-Brossor的固体元素,没有任何内部虚张声器中的任何中央虚拟机构。通过旋流器的轴向和切向狭缝的辉光可以单独调整。分析了旋流和QuAl角度对流场和火焰形状的影响。小型油颗粒上的激光断层扫描揭示了在分离通道中注入的燃料,氧化剂和稀释剂在喷射器出口处很好地混合。测速测量和火焰图像表明,轴向加切向旋流器允许灵活地控制火焰前缘位置相对于喷射器出口。对于具有给定Quall角和旋流数的固定喷射器几何形状,发现N_2-和CO_2稀释的火焰具有相同的拓扑,如果注入的可燃混合物具有相同的绝热火焰温度,则它们可以具有不同的散装注射速度和层层燃烧速度。然而,稳定稳定的CO_2稀释的火焰的可操作范围减少。

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