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High speed OH PLIF applied to multiphase combustion (Review)

机译:高速OH PLIF用于多相燃烧(综述)

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Multiphase reactive systems can exhibit highly dynamic combustion phenomena that could be better understood by using recently developed high-repetition-rate optical diagnostic and imaging approaches. Here, we present an overview of recent activities using high-speed (5 kHz) OH planar laser-induced fluorescence to visualize and make measurements in several multiphase reactive systems. This technique is used to visualize the dynamically changing OH concentration in the gas phase near the surface of solids, liquids, and gels. In addition to gas-phase OH imaging, condensed phases of various solid propellants, gels, and liquids are found to fluoresce when exposed to the laser radiation centered at 283.2 nm. Simultaneous imaging of condensed phases and gasphase OH radical fluorescence has proven to be particularly useful for various measurements, and several examples are presented.
机译:多相反应系统可以表现出高度动态的燃烧现象,通过使用最近开发的高重复率光学诊断和成像方法可以更好地理解该现象。在这里,我们概述了使用高速(5 kHz)OH平面激光诱导的荧光来可视化并在几个多相反应系统中进行测量的最新活动。该技术用于可视化靠近固体,液体和凝胶表面的气相中动态变化的OH浓度。除了气相OH成像外,还发现各种固体推进剂,凝胶和液体的冷凝相在以283.2 nm为中心的激光辐射下会发荧光。冷凝相和气相OH自由基荧光的同时成像已被证明对于各种测量特别有用,并提供了几个示例。

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