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Hybrid Reynolds-Averaged and Large-Eddy Simulation of Mixing in an Axisymmetric Scramjet

机译:轴对称炒法混合的混合雷诺平均和大涡流模拟

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An unsteady numerical simulation of a simple axisymmetric inlet-fuelled scramjet engine concept is performed using a hybrid Reynolds-averaged Navier-Stokes and large-eddy simulation approach with a low-dissipation numerical scheme. The freestream has a Mach number of 7.5 with Mach 8 flight enthalpy and a dynamic pressure of 48 kPa. The simulation is of a non-reacting case where hydrogen is injected into nitrogen. The simulation is used to provide a detailed description of the structure of the flow. The simulation shows that a large-scale pair of counter-rotating vortices forms within the scramjet combustor, with rotation opposite to the rotation of the pair that forms further upstream due to the interaction of the fuel plume with the crossflow. This vortex pair is found to significantly alter the shape of the hydrogen fuel plume, and increase the rate at which the hydrogen is mixing by more than a factor of two compared to before the vortex pair is formed. The distribution of hydrogen is examined in detail, including instantaneous mole fraction, the time-averaged mole fraction, as well as root mean square of fluctuations of hydrogen mole fraction. The time-averaged and fluctuating wall pressures, the mean velocity field, and resolved turbulence quantities are also examined. Additionally, the hybrid Reynolds-averaged Navier-Stokes and large-eddy simulation results are used to evaluate the performance of a steady-state Reynolds-averaged Navier-Stokes simulation of the configuration.
机译:使用Hybrid Reynolds-Iveriged Navier-Stokes和具有低耗散数值方案的大涡模拟方法来执行简单的轴对称入口燃料扰扰引擎概念的不稳定数值模拟。 FreeStream的Mach数为7.5,Mach 8飞行焓和48 KPA的动态压力。模拟是一种不反应的情况,其中氢气注入氮气中。模拟用于提供流动结构的详细描述。仿真表明,在扰燃器内部的大规模对反旋转涡旋形成,其旋转与该对的旋转相反,该对由于燃料羽流与横流的相互作用而形成的进一步上游。发现该涡旋对显着改变氢燃料羽流的形状,并在形成涡流对之前,增加氢气混合的速率超过两个倍数。详细研究了氢的分布,包括瞬时摩尔分数,时间平均摩尔分数,以及氢摩尔级分的波动的均方根平方。还检查了时间平均和波动,平均速度场和分辨的湍流量。此外,Hybrid Reynolds平均的Navier-Stokes和大涡模拟结果用于评估配置的稳态雷诺平均的云序仿真的性能。

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