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Chemiluminescence Imaging in Supersonic Combustors Operating in Radical-Farming Mode

机译:以自由基农作模式运行的超音速燃烧器的化学发光成像

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Emission spectroscopy was used to investigate ignition and combustion characteristics of supersonic combustion ramjet engines. Two-dimensional scramjet models with inlet injection, fuelled with hydrogen gas, were used in the study. The scramjet engines were configured to operate in radical farming mode, where combustion radicals are formed behind shock waves reflected at the walls. The chemiluminescence emission signals were recorded in a two-dimensional, time-integrated fashion to give information on the location and distribution of the radical farms in the combustors. High signal levels were detected in localised regions immediately downstream of shock reflections, an indication of localised hydroxyl formation supporting the concept of radical farming. Results are presented for a symmetric as well as an asymmetric scramjet geometry. These data represent the first successful visualisation of radical farms in the hot pockets of a supersonic combustor. Spectrally resolved measurements have been obtained in the ultraviolet wavelength range between 300 and 400 nm. This data shows that the OH* chemiluminescence signal around 306 nm is not the most dominant source of radiation observed in the radical farms.
机译:发射光谱法用于研究超音速燃烧冲压发动机的点火和燃烧特性。在研究中使用了带有进气喷射的二维超燃冲压发动机模型,该模型以氢气为燃料。超燃冲压发动机配置为以激进耕作模式运行,在激进耕作模式下,燃烧自由基在壁反射的冲击波后形成。化学发光发射信号以二维,时间积分的方式记录,以提供有关燃烧室中自由基场的位置和分布的信息。在冲击反射下游的局部区域中检测到高信号水平,这表明局部羟基形成表明了自由基耕作的概念。给出了对称和非对称超燃冲压几何的结果。这些数据代表了超音速燃烧器热腔中的激进场的首次成功可视化。在300至400 nm的紫外线波长范围内已获得光谱分辨的测量结果。此数据表明,在自由基农场中观察到的306 nm附近的OH *化学发光信号不是最主要的辐射源。

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