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Validation of a laser-induced fluorescence (LIF) model for mole-fraction imaging

机译:摩尔分数成像的激光诱导荧光(LIF)模型的验证

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The successful development of a supersonic combustion ramjet (scramjet) engine depends critically on finding ways to mix fuel and air efficiently at supersonic speeds. A planar laser-induced fluorescence (PLIF) method for visualising fuel mole-fraction has recently been developed by Fox et al. (1998). This method is used in a turbulent environment to obtain instantaneous images of fuel mole-fraction. These images can then be analysed to determine the efficiency of mixing, allowing quantitative comparison between different fuel-injector designs. However, to obtain the maximum useful amount of information from the images it is necessary to establish the limitations of the LIF model. The paper presents a partial validation of the theoretical modelling used in the fuel mole-fraction imaging method. In particular, we investigate the collisional quenching dependence and the pressure dependence of the LIF intensity.
机译:超音速燃烧冲压发动机的成功开发,关键取决于寻找以超音速有效混合燃料和空气的方法。 Fox等人最近开发了一种用于观察燃料摩尔分数的平面激光诱导荧光(PLIF)方法。 (1998)。此方法用于湍流环境中,以获取燃料摩尔分数的瞬时图像。然后可以分析这些图像以确定混合效率,从而可以对不同喷油器设计之间进行定量比较。但是,为了从图像中获得最大的有用信息量,有必要建立LIF模型的局限性。本文对燃料摩尔分数成像方法中使用的理论模型进行了部分验证。特别是,我们研究了LIF强度的碰撞猝灭依赖性和压力依赖性。

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