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Experimental study and RANS calculation on velocity and temperature of a kerosene-fueled swirl laboratory combustor with and without centerbody air injection

机译:有和没有中心空气注入的煤油旋流实验室燃烧器的速度和温度的实验研究和RANS计算

摘要

Experimental study and RANS calculation were performed for a kerosene-fueled swirl laboratory combustor with and without the air injection through the cross-drilled circular openings in the centerbody of the swirler. The particular interest of the work is to explore the potential advantages of the centerbody air injection in enhancing the non-premixed combustion performance of the swirl combustor. Specifically, the velocity and temperature fields were measured under non-reacting and reacting flow conditions, respectively, to investigate the influence of the centerbody air injection on the central recirculation zone, which plays a crucial role in combustion stabilization. Numerical calculation based on RANS was conducted and compared with the experimental measurements to further quantify experimental observations. In addition, the combustion efficiency was evaluated based on the after burning flue-gas analysis. The experimental and numerical results show that an enlarged recirculation zone with higher temperature can be formed in the swirl combustor with the centerbody air injection, which therefore may hold potentials in enhancing flame stabilization and combustion efficiency. In addition, the centerbody air injection pushes the recirculation zone to the farther downstream of the fuel injector and hence can reduce the exposure of the fuel injector to the higherature combustion zone. Since the centerbody air injection was found to only slightly modify the effective swirl number, the modified velocity and temperature characteristics are mainly due to the changes of the shape and location of the central recirculation zone and the local stoichiometry in the vicinity of fuel injection. A parametric study for various inlet air velocities and excess air factors further substantiates the effectiveness of the centerbody air injection on improving the combustion performance although the extent of the improvement relies on other factors that therefore merits future studies for optimization design.
机译:对煤油燃料旋流式实验室燃烧器进行了实验研究和RANS计算,该燃烧器有或没有通过旋流器中心体中的十字钻孔圆形开口注入空气。该工作的特别兴趣是探索中心体空气喷射在增强旋流燃烧器的非预混燃烧性能方面的潜在优势。具体来说,分别在非反应性和反应性流动条件下测量速度和温度场,以研究中心体空气注入对中央再循环区的影响,这对燃烧稳定起着至关重要的作用。进行了基于RANS的数值计算,并将其与实验测量结果进行比较,以进一步量化实验观察结果。另外,基于燃烧后的烟气分析来评价燃烧效率。实验和数值结果表明,在带有中心空气注入的涡流燃烧器中,可以形成高温的扩大的回流区,因此在提高火焰稳定性和燃烧效率方面可能具有潜力。另外,中心体空气喷射将再循环区域推到燃料喷射器的更下游,因此可以减少燃料喷射器暴露于较高燃烧区域。由于发现中心体空气喷射仅稍微改变了有效旋流数,所以改变的速度和温度特性主要是由于中央再循环区的形状和位置以及燃料喷射附近的局部化学计量的变化所致。对各种进气速度和过量空气因素的参数研究进一步证实了中心空气注入对改善燃烧性能的有效性,尽管改善的程度取决于其他因素,因此有待于将来进行优化设计。

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