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首页> 外文期刊>International journal of computational fluid dynamics >Large-eddy simulations of plasma-based asymmetric control of supersonic round jets
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Large-eddy simulations of plasma-based asymmetric control of supersonic round jets

机译:基于等离子体的超音速圆形射流不对称控制的大涡模拟

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摘要

Localised arc filament plasma actuators are modelled with a validated technique to examine asymmetric control of a perfectly expanded round free jet to deflect its downstream trajectory. The nominal Mach and Reynolds numbers are 1.3 and 1 million, respectively. No-control, symmetrically controlled, and under-expanded jets are also simulated for comparison purposes. Parametric variation of actuation frequency and duty cycle indicate that asymmetric control can alter the trajectory, and, within the confines of the parameters investigated, the optimal forcing scheme was found to correspond to the jet's column-mode frequency and a duty cycle of approximately 60%. Increasing frequency and duty cycle beyond these values have a detrimental effect on control, which is consistent with experimental findings. Asymmetric actuation resulted in significant mixing enhancement on the actuated side, as evidenced by the increased growth rate of the non-dimensional momentum thickness. The effectiveness of control is reduced for under-expanded jet conditions.
机译:局部电弧灯丝等离子体致动器采用经过验证的技术建模,以检查完美膨胀的圆形自由射流的不对称控制,以偏转其下游轨迹。马赫数和雷诺数分别为1.3和100万。为了进行比较,还模拟了无控制,对称控制和膨胀不足的喷嘴。驱动频率和占空比的参数变化表明,非对称控制可以改变轨迹,并且在所研究的参数范围内,发现最佳的强制方案对应于喷嘴的列模式频率和大约60%的占空比。频率和占空比的增加超过这些值会对控制产生不利影响,这与实验结果一致。不对称的致动导致被致动侧的显着混合增强,这由无量纲动量厚度的增长速度所证明。在喷射条件不足的情况下,控制的有效性会降低。

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