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Modal analysis of passive flow control for the turbulent wake of a generic planar space launcher

机译:通用平面空间发射器湍流唤醒的无源流量控制模态分析

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The turbulent wake of a generic planar space launcher equipped with two passive flow control devices is simulated using a zonal RANS–LES method and analyzed by dynamic mode decomposition (DMD). In the first approach, the effect of a classical boat tail on the wake is examined. In the second concept, a flow control device consisting of semi-circular lobes integrated at the base shoulder of the main body is used. The objective of the two concepts is to reduce the reattachment length and thus the lever arm of the forces as well as to stabilize the separated shear layer. Using a boat tail, the reattachment length can be reduced by 50%. Furthermore, it is shown that the semi-circular lobes enhance the turbulent mixing and the shear layer growth rate. Hence, they significantly reduce the reattachment length by about 75%. The semi-circular lobes partially reduce undesired low-frequency pressure fluctuations on the nozzle surface. However, this reduction is achieved at the expense of an increase of high-frequency pressure fluctuations due to intensified small turbulent scales. The DMD analysis of the velocity field reveals that the large-scale coherent structures featuring a wave length of two step heights observed in the reference configuration without flow control can be suppressed by the lobes. The spanwise wave length of the coherent structures seems to depend on the geometry of the lobes, since all detected spatial DMD modes show a spanwise periodicity being equal to the distance between two lobes.
机译:使用Zonal Rans-LES方法模拟配备有两个被动流量控制装置的通用平面空间发射器的湍流唤醒,并通过动态模式分解(DMD)分析。在第一种方法中,检查了古典船尾在尾尾的效果。在第二概念中,使用由集成在主体的底部肩部的半圆形凸起组成的流量控制装置。这两个概念的目的是减小重新连接长度,从而减小力的杠杆臂以及稳定分离的剪切层。使用船尾,重新连接长度可降低50%。此外,显示半圆形裂片增强湍流混合和剪切层生长速率。因此,它们显着将重新连接长度减少约75%。半圆形凸起部分减少了喷嘴表面上的不期望的低频压力波动。然而,这种减少是以牺牲高频压力波动的增加而实现的,这是由于强化的小湍流尺度。速度场的DMD分析揭示了在没有流量控制的参考配置中观察到的两步高度的大规模相干结构,可以抑制叶片。相干结构的始线波长似乎取决于叶片的几何形状,因为所有检测到的空间DMD模式都示出了跨度周期性等于两个凸起之间的距离。

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