首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Spatial structural characteristics of a combustion flow field in an ethylene-fueled supersonic combustor with a rear-wall-expansion cavity
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Spatial structural characteristics of a combustion flow field in an ethylene-fueled supersonic combustor with a rear-wall-expansion cavity

机译:后壁 - 膨胀腔中乙烯燃料超声燃烧器中燃烧流场的空间结构特征

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摘要

A hybrid large eddy simulation (LES)/assumed subgrid probability density function (PDF) closure model was employed to investigate the structural characteristics of the combustion flow field in an ethylene-fueled supersonic combustor with a rear-wall-expansion cavity. The wall pressure distribution from numerical simulation was compared with experimental data, and the numerical results are in good agreement with the experimental data. The spatial distribution characteristics of combustion heat release in the flow field are obtained from the simulation results. The reaction heat release zone is mainly distributed in the cavity. The cavity shear layer forms a concentrated reaction zone that produces a large amount of chemical heat release, thus further maintaining local stable combustion and forming a flame base. The front part of the cavity shear layer has the highest temperature in the whole flow field. There is still excess fuel reaching the cavity rear wall and producing a certain intensity of reaction. In addition, a dispersed small flame intermittently forms in the downstream near-wall region. The premixed combustion mode dominates the cavity recirculation zone, while the combustion in the downstream region evidently shows a non-premixed mode.
机译:采用混合大涡模拟(LES)/假设的底粒概率密度函数(PDF)封闭模型来研究具有后壁 - 膨胀腔的乙烯燃料超声燃烧器中燃烧流场的结构特性。将来自数值模拟的壁压分布与实验数据进行比较,数值结果与实验数据吻合良好。流场中燃烧热释放的空间分布特性从模拟结果获得。反应热释放区主要分布在腔中。腔剪切层形成浓缩的反应区,其产生大量的化学热释放,从而进一步保持局部稳定的燃烧并形成火焰碱。腔剪切层的前部在整个流场中具有最高温度。仍然存在多余的燃料到达腔后壁并产生一定的反应强度。另外,在靠近壁区域的下游间歇地形成分散的小火焰。预混合的燃烧模式主要主导腔再循环区域,而下游区域中的燃烧明显地示出了非预混模式。

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