首页> 外文会议>Conference of the Italian Thermal Machines Engineering Association >Impact of Plasma Actuation on the Stability of a Co-Flow Premixed Methane-Air Flame under Lean Conditions
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Impact of Plasma Actuation on the Stability of a Co-Flow Premixed Methane-Air Flame under Lean Conditions

机译:血浆致动对瘦条件下循环预混合甲烷 - 空气火焰稳定性的影响

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The present work shows a preliminary investigation of the impact of plasma actuation on lifted flame stabilization in a methane CH_4-air Bunsen burner at ambient conditions. A high voltage (HV)/high frequency sinusoidal signal has been considered for the investigation. Also, different plasma actuator configurations have been tested, which differently ionized the flame detachment region immediately outside the Bunsen outlet and affected the flame behavior and reattachment. Experimental investigations were complemented by a numerical study, which allowed explaining the effect of each actuator configuration on the flow. Therefore, once the best actuator configuration was selected, the efficiency of the plasma actuation has been evaluated in terms of flame anchoring capability and actuator dissipated power (while keeping the fuel-to-air equivalence ratio Φ fixed around 0.035). In particular, iorder to change the actuator power dissipation, different peak-to-peak voltages Vpp were tested, while the actuation frequency was kept equal to 20 kHz. Results showed that the plasma actuation allowed reattaching the flame with a negligible dissipated power (about 0.05 W). Other equivalence ratios were then tested by increasing the air flow rate and keeping constant the fuel flow rate. Results showed that we can operate at very lean conditions (Φ around 0.021) with a power dissipation lower than 0.1 W.
机译:本作本作表明,在环境条件下对甲烷CH_4-AIR Bunsen燃烧器中的血浆致动对升降火焰稳定的影响的初步调查。已经考虑了高压(HV)/高频正弦信号进行调查。此外,已经测试了不同的等离子体致动器配置,其在Bunsen出口外立即将火焰脱离区域不同地电离,并影响了火焰行为和重新附着。通过数值研究补充了实验研究,该研究允许解释每个致动器配置对流动的影响。因此,一旦选择了最佳的致动器配置,就在火焰锚固能力和致动器耗散功率方面评估了等离子体致动的效率(同时保持燃料到空气等效比φ固定约0.035)。特别地,为了改变执行器功耗,测试不同的峰到峰值电压VPP,而致动频率保持等于20kHz。结果表明,等离子体致动使得具有可忽略的耗散功率(约0.05W)重新连接火焰。然后通过增加空气流速并保持恒定燃料流速来测试其他等效比。结果表明,我们可以在非常贫条件下(φ约0.021),功耗低于0.1W。

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