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Influence of amplitude and frequency modulation on flow created by a synthetic jet actuator

机译:振幅和频率调制对合成射流执行器产生的流量的影响

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摘要

Synthetic jet actuator is a compact device that has applications in drag reduction, heat transfer enhancement and controlled mixing. An isolated synthetic jet is produced by the interaction of a train of vortices that are formed by alternate ejection and suction of fluid across an orifice such that the time-averaged mass flux is zero. A unique feature of a synthetic jet is that it is formed entirely from the working fluid of the flow system in which it is utilized. The temporal and spatial characteristics of the synthetic jet are dependent on the actuator operating conditions. Amplitude and frequency modulation of the actuator offer possibility of better flow control. No systematic study on the effect of amplitude modulation on synthetic jet characteristics is available in the literature. The present study reports the properties of the synthetic jet as a function of both excitation voltage and modulation frequency. Three modulating frequencies namely, 10 Hz, 25 Hz, and 50 Hz and excitation voltages in the range 5-50 V has been considered. Schlieren visualization has been used to characterize the jet spread while hotwire anemometry provides detailed time-averaged and fluctuating velocity fields. The present study shows a significant impact of amplitude modulation on the spatial and temporal evolution of synthetic jets. The rms velocity fluctuations increase due to amplitude modulation and the effect is more pronounced at low modulating frequencies. The behavior of a synthetic jet in the presence of a neighboring synthetic jet, i.e. the behavior of a dual synthetic jet configuration has also been investigated. The spreading of the jet is seen to increase considerably in the presence of a second neighboring synthetic jet.
机译:合成射流致动器是一种紧凑的设备,可应用于减阻,传热增强和受控混合。孤立的合成射流是通过一系列涡流的相互作用而产生的,这些涡流是通过流体交替喷射和抽吸穿过小孔而形成的,因此时间平均质量通量为零。合成射流的独特之处在于它完全由使用它的流动系统的工作流体形成。合成射流的时间和空间特性取决于执行器的工作条件。执行器的振幅和频率调制提供了更好的流量控制的可能性。文献中没有关于调幅对合成射流特性影响的系统研究。本研究报告了合成射流的特性与激励电压和调制频率的关系。已经考虑了三个调制频率,即10 Hz,25 Hz和50 Hz,以及5-50 V范围内的激励电压。 Schlieren可视化技术已用于表征射流散布,而热线风速仪提供了详细的时间平均和波动速度场。本研究表明振幅调制对合成射流的时空演化有重大影响。均方根速度波动由于幅度调制而增加,并且在低调制频率下效果更加明显。还研究了在存在相邻合成射流的情况下合成射流的行为,即双重合成射流构型的行为。在第二个相邻的合成射流的存在下,射流的扩散明显增加。

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