Plasma Actuation to Enhance the Flame Stabilization in a Non-Premixed Lean Microburner

S. Campilongo, M. D. De Giorgi, A. Ficarella, E. Pescini, Aldebara Sciolti, G. Dilecce
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引用次数: 1

Abstract

Aim of the present paper is the characterization of a non-premixed methane/air microburner, Bunsen-type, equipped with a plasma actuator for the flame stabilization and the blowoff control. The burner is optically accessible to permit imaging acquisitions of the flame region. The plasma actuation regards the air flow, while the fuel flow is protected by the action of the electric field. The limits of flashback and blowoff were recorded in presence and in absence of the plasma actuation. The flame behavior was acquired using a digital camera in order to capture the differences between the baseline conditions and the actuated cases. The results appear very encouraging for future application in powering micro-devices for aerial and industrial application. It was shown that the plasma significantly allows stabilizing the flame under lean conditions where it would not exist without plasma.
等离子体驱动增强非预混稀薄微燃烧器的火焰稳定性
本文的目的是表征一个非预混甲烷/空气微燃烧器,本生型,配备了一个等离子体执行器的火焰稳定和吹出控制。燃烧器是光学可及的,以允许火焰区域的成像获取。等离子体驱动涉及空气流动,而燃料流动受到电场作用的保护。在存在和不存在等离子体驱动的情况下,记录了闪回和吹出的极限。利用数码相机对火焰行为进行了采集,以便捕捉到基线条件和驱动情况之间的差异。这一结果对于未来在航空和工业应用中为微型设备供电的应用是非常令人鼓舞的。结果表明,等离子体可以在稀薄的条件下显著地稳定火焰,而没有等离子体就不会存在火焰。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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