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首页> 外文期刊>Acta astronautica >Assessment of the modified rotation/curvature correction SST turbulence model for simulating swirling reacting unsteady flows in a solid-fuel ramjet engine
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Assessment of the modified rotation/curvature correction SST turbulence model for simulating swirling reacting unsteady flows in a solid-fuel ramjet engine

机译:评估改进的旋转/曲率校正SST湍流模型,以模拟固体燃料冲压喷气发动机中的旋流反常流

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摘要

The present paper presents an assessment of the performance of the modified curvature-correction shear stress transport turbulence model (SST-CCM) proposed by Omer Musa et al. (2016) [12], for simulating swirling reacting unsteady flow in a solid-fuel ramjet engine. Results are compared to both the original SST and rotation curvature SST (SST-RC) turbulence models. First, a numerical model has been developed to solve axisymmetric unsteady Reynolds-averaged Navier-Stokes equations of the turbulent swirling compressible flow field with chemical reactions. Second, in order to evaluate the accuracy and robustness of the code, experiment on the solid-fuel ramjet without swirl has been performed and simulation on Shock-induced combustion benchmark case is carried out as well. Finally, unsteady simulations are carried out for reacting turbulent flows in a solid fuel ramjet using Polyethylene (PE) solid fuel with three different turbulence models. It is found that in terms of accuracy for simulating reacting swirling flows the modified model slightly improves the original SST model and is quite similar to the SST-RC.
机译:本文介绍了由Omer Musa等人提出的改进的曲率校正剪切应力传输湍流模型(SST-CCM)的性能评估。 (2016)[12],用于模拟固体燃料冲压喷气发动机中的旋流反应性非稳态流动。将结果与原始SST和旋转曲率SST(SST-RC)湍流模型进行比较。首先,建立了一个数值模型来解决带有化学反应的湍流旋流可压缩流场的轴对称非稳态雷诺平均Navier-Stokes方程。其次,为了评估代码的准确性和鲁棒性,已对无涡旋的固体燃料冲压发动机进行了实验,并对冲击诱导的燃烧基准情况进行了仿真。最后,进行了非稳态模拟,以使用三种不同湍流模型的聚乙烯(PE)固体燃料对固体燃料冲压发动机中的湍流进行反应。结果发现,就模拟旋流的精确度而言,改进后的模型对原始SST模型有所改进,并且与SST-RC非常相似。

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