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Numerical Solution of the Flowfield in an Aluminized Gel Fuel Ramjet

机译:铝化凝胶燃料冲压发动机流场的数值解

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The flowfield of an aluminized Gel Fuel Ramjet combustor has been studied and solved numerically. A theoretical model of the combustor, which considers the pulsatile combustion of the gel fuel droplets in combination with the aluminum particles combustion has been developed. The model was solved numerically using the CFD code FLUENT and a parametric investigation was conducted. Gelled kerosene droplets and the aluminum particles were injected discretely to the burner flowfield. The gel droplet burning mechanism was modeled by modification of the droplet vaporization pressure with droplet lifetime and the aluminum particles were added separately from the fuel droplets downstream from the fuel injection. The current research results indicate that despite the pulsatile burning mechanism of the organic gellant-based gel kerosene droplets, the calculated temperature field in the combustor was found to be rather smooth. In general, the periodic burning of the gel droplets slightly lowers the combustor temperature.
机译:研究了铝化的Gel Fuel Ramjet燃烧室的流场,并对其进行了数值求解。已经开发出一种燃烧器的理论模型,该模型考虑了凝胶燃料液滴的脉动燃烧与铝颗粒燃烧的结合。使用CFD代码FLUENT对模型进行了数值求解,并进行了参数研究。胶凝的煤油小滴和铝颗粒被不连续地注入燃烧器流场。通过改变液滴的蒸发压力和液滴寿命来模拟凝胶液滴的燃烧机理,并在燃料喷射的下游将铝颗粒与燃料液滴分开添加。当前的研究结果表明,尽管基于有机胶凝剂的凝胶煤油小滴具有脉冲燃烧机理,但发现燃烧室中的计算温度场相当平稳。通常,凝胶液滴的周期性燃烧会略微降低燃烧器温度。

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