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Ignition dynamics of a pulse detonation igniter in a supersonic cavity flameholder

机译:超音腔扑灯脉冲脉动点火器的点火动力学

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The dynamics of using a pulse detonation wave to ignite a supersonic cavity flameholder was investigated. Fueling conditions ranging from lean to rich were investigated. Simultaneous 40-kHz schlieren imaging, OH planar laser-induced fluorescence, and chemiluminescence imaging were used to elucidate the fluid dynamics and combustion physics throughout the transient disruption of the ignition event. For moderate and rich fueling conditions, the ignition event stabilized combustion away from the detonation plume until the detonation products were fully exhausted. Ignition of leaner conditions required a low-level flame kernel to persist in the cavity step until the recirculating cavity flow field was re-established. The initial ignition mechanism was shown to be primarily driven by hot products from the detonation plume shedding into the low velocity region near the aft facing step in the cavity, followed by propagation and stabilization of a flame to a favorable region of the cavity. Quenching of cavity combustion at lean overall cavity mixtures was shown to be due to temporary backpressuring of cavity fuel injectors and cavity evacuation from the detonation pressure impulse. (C) 2020 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:研究了使用脉冲爆震波来点燃超音速腔体积器的动力学。调查了从倾向于富裕的燃料条件。同时40-KHz Schlieren成像,OH Planar激光诱导的荧光和化学发光成像用于阐明在点火事件的瞬态破坏过程中的流体动力学和燃烧物理学。对于中等和丰富的加油条件,点火事件稳定燃烧远离爆轰羽流直至爆炸产品完全耗尽。稀释条件的点火需要低级火焰核,以持续在腔步骤中,直到重新建立再循环腔流场。初始点火机构被示出为主要由来自爆炸羽流脱落到腔侧面靠近腔体靠近的低速区域的热产物驱动,然后通过向腔的良好区域传播和稳定火焰。显示贫腔混合物中的腔燃烧的淬火是由于腔燃料喷射器的临时背压和来自爆炸压力脉冲的腔疏散。 (c)2020燃烧研究所。由elsevier Inc.出版的所有权利保留。

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