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Aerodynamic heat prediction on a 15 degree Cone-Cylinder-Flare configuration using 2D axisymmetric viscous transient CFD

机译:使用2D轴对称粘性瞬态CFD对15度锥形缸 - 火炬配置的空气动力学热预测

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This paper investigates a method to predict aerodynamic heating on a supersonic flare body using a 2D axisymmetric transient viscous CFD simulation. Five turbulent models and three simulation time step sizes were utilized. The surface temperature of the rocket predicted by the simulations was compared to the published experimental data obtained from the first 26 s of a rocket flight test. It was found that the Transition SST model performed better than the others. Furthermore, the simulation results matched the experimental data well during the first 7 second. Then the difference between the simulation results and the experimental data became noticeable. But their trends were still the same and CFD simulation overestimated the temperature most of the time.
机译:本文研究了使用2D轴对称瞬时粘性CFD模拟预测超声波闪光体上的空气动力学加热的方法。使用五种湍流模型和三个模拟时间步长。将模拟预测的火箭的表面温度与从火箭飞行试验的前26秒获得的公开的实验数据进行了比较。发现转变SST模型比其他转变模型更好。此外,仿真结果在前7秒钟内良好地匹配了实验数据。然后模拟结果与实验数据之间的差异变得明显。但他们的趋势仍然是相同的,CFD模拟大部分时间都要高估了温度。

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