首页> 外文会议>IMECE2009;ASME international mechanical engineering congress and exposition >COMPUTATIONAL STUDY OF FREQUENCY AND AMPLITUDE EFFECTS ON SEPARATION FLOW CONTROL WITH THE SYNTHETIC JET
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COMPUTATIONAL STUDY OF FREQUENCY AND AMPLITUDE EFFECTS ON SEPARATION FLOW CONTROL WITH THE SYNTHETIC JET

机译:合成射流对分离流控制的频率和振幅影响的计算研究

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In order to investigate the frequency and amplitude effects of the synthetic jet on the flow field, numerical simulation is carried out. Even though the final objective of this study is to understand mechanism of separation control for various objects, streamline and bluff bodies, the configuration of backward-facing step is chosen as the first step because of the simplicity. Three-dimensional Navier-Stokes equations are solved. Implicit large eddy simulation using high-order compact difference scheme is applied. The present analysis is addressed on the frequency characteristics of the synthetic jet for understanding frequency characteristics and flow-filed. Three cases are selected, No-control, F_h~+ =0.2 and F_h~+ =2.0, where non-dimensional frequency F_h~+ is normalized with the height of backward-facing step and the free stream velocity. The present computation shows that at F*h =0.2, separation length is 20 percent shorter than the No-control case. Strong two-dimensional vortices generated from the synthetic jet interact with the shear layer, which results in the increase of the Reynolds stress in the shear layer region. These vortices are deformed into three-dimensional structures, which make Reynolds stress stronger in the recirculation region. At F_h~+ =2.0, size of the separation length is almost same as the No-control case because the mixing between the synthetic jet and the shear layer is not enhanced. Weak and short periodic vortices induced from the synthetic jet do not interacts with the shear layer very much and diffuse in the recirculation region.
机译:为了研究合成射流的频率和振幅对流场的影响,进行了数值模拟。尽管本研究的最终目标是了解各种物体,流线型和钝体的分离控制机制,但由于简单性,所以选择了后向步骤的配置作为第一步。求解了三维Navier-Stokes方程。应用了采用高阶紧致差分格式的隐式大涡模拟。本分析针对合成射流的频率特性,以了解频率特性和流场。选择三种情况,即无控制,F_h〜+ = 0.2和F_h〜+ = 2.0,其中无量纲频率F_h〜+通过后向台阶的高度和自由流速度归一化。当前计算表明,在F * h = 0.2时,分离长度比无控制情况下短20%。由合成射流产生的强二维涡旋与剪切层相互作用,这导致剪切层区域中的雷诺应力增加。这些旋涡变形为三维结构,这使雷诺应力在再循环区域更强。在F_h〜+ = 2.0时,分离长度的大小与无控制情况几乎相同,因为合成射流与剪切层之间的混合没有增强。由合成射流引起的弱而短的周期性涡旋不会与剪切层发生很大的相互作用,而是在再循环区域中扩散。

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