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Effect of swirl on combustion dynamics in a lean-premixed swirl-stabilized combustor

机译:旋流对瘦旋流稳定燃烧器中燃烧动力学的影响

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The effect of inlet swirl on the flow development and combustion dynamics in a lean-premixed swirl-stabilized combustor has been numerically investigated using a large-eddy-simulation (LES) technique along with a level-set fiamelet library approach. Results indicate that when the inlet swirl number exceeds a critical value, a vortex-breakdown-induced central toroidal recirculation zone is established in the downstream region. As the swirl number increases further, the recirculation zone moves upstream and merges with the wake recirculation zone behind the centerbody. Excessive swirl may cause the central recirculating flow to penetrate into the inlet annulus and lead to the occurrence of flame flashback. A higher swirl number tends to increase the turbulence intensity, and consequently the flame speed. As a result, the flame surface area is reduced. The net heat release, however, remains almost unchanged because of the enhanced flame speed. Transverse acoustic oscillations often prevail under the effects of strong swirling flows, whereas longitudinal modes dominate the wave motions in cases with weak swirl. The ensuing effect on the flow/flame interactions in the chamber is substantial.
机译:使用大涡模拟(LES)技术以及水平集FiaMelet文库方法,在数值研究了在稀释预混旋涡稳定燃烧器中的流动开发和燃烧动力学对流动开发和燃烧动力学的影响。结果表明,当入口涡流号超过临界值时,在下游区域建立涡流击穿诱导的中心环形再循环循环区。随着涡流数进一步增加,再循环区上游移动并与塞子背后的唤醒再循环区合并。过度旋流可能导致中央再循环流渗透到入口环上并导致火焰闪回的发生。较高的涡流趋于增加湍流强度,从而增加火焰速度。结果,降低了火焰表面积。然而,由于火焰速度增强,净热释放仍然保持不变。横向声振荡通常在强旋流的影响下占上风,而纵向模式在弱涡流的情况下主导了波动动作。随后对腔室中的流动/火焰相互作用的影响很大。

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