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首页> 外文期刊>International Journal of Technology >Characteristics of Vortex Ring Formation by Synthetic Jet Actuators in Different Cavities
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Characteristics of Vortex Ring Formation by Synthetic Jet Actuators in Different Cavities

机译:合成射流致动器在不同腔中形成涡旋环的特性

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This paper presents a baseline study of the development of turbulent flow separation for controlling aerodynamic phenomena, especially in the design of the vehicle body. The purpose of this study was to analyze the performance of synthetic jet actuators (SJAs) as one of the tools that can be used in reducing the flow controller separation area on the bluff body model of the vehicle. To get maximum results in the performance of the SJA, this research starts with characterizing the actuator, including changes in the shape of the cavity and orifice diameter. Cavity shapes tested were half-ball (B), tube (T) and cone (K), while orifice diameters of 3, 5 and 8 mm were examined. The study was conducted using both computational and experimental approaches. Results from both types of research methods were compared and displayed in graphical form. These results serve as a reference for determining future research. The experimental results, in the form of the flow rate for each type of cavity, determined the ability of different cavity conditions to form vortex rings, whereas in CFD simulations, the formation of vortex rings was demonstrated via the visualization of flow contours. Vortex rings occurred in cavity conditions B3, T3, T5, K3 and K5. Vortex rings were not formed on any type of cavity with an orifice having a diameter of 8 mm.
机译:本文提出了用于控制空气动力学现象的湍流分离发展的基线研究,特别是在车身设计中。这项研究的目的是分析合成射流执行器(SJA)的性能,该工具是可用于减少车​​辆钝体模型上的流量控制器分离面积的工具之一。为了获得SJA性能的最佳结果,这项研究首先要对执行器进行特性分析,包括腔体形状和孔口直径的变化。测试的型腔形状为半球形(B),管形(T)和圆锥形(K),而孔口直径分别为3、5和8 mm。该研究是使用计算和实验方法进行的。比较了两种研究方法的结果,并以图形形式显示。这些结果可作为确定未来研究的参考。实验结果以每种腔体的流速形式确定了不同腔体条件形成涡流环的能力,而在CFD模拟中,通过可视化流场轮廓证明了涡流环的形成。涡流环发生在空腔条件B3,T3,T5,K3和K5中。在任何类型的带有直径为8 mm的孔的型腔上均未形成涡流环。

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