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Acoustic-excited vortex shedding and acoustic nonlinearity at a rectangular slit with bias flow

机译:带有偏流的矩形缝隙处的声激涡旋脱落和声非线性

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摘要

The acoustical response of a slit with a mean bias flow is numerically studied. By means of a potential flow model based on the discrete vortex method and a spanwise-averaged three-dimensional Green's function, both unsteady vortical flow and slit impedance are obtained in a unified theoretical framework. The numerical simulation focuses on the acoustic-excited vortex structures of the slit flow while neglecting the viscous damping effect. Three representative flow features are demonstrated, which are the destabilized jet flow, the rolling up of vortex sheets and formation of vortex pairs, and the reversal flow with alternating vortex shedding on both sides of the slit. These features are corresponding to low, moderate, and high sound amplitude, respectively. The acoustic behavior of the slit can be divided into linear, transition, and nonlinear regimes. During its evolution through the three regimes, the resistance exhibits a constant value, a slight decrease, and a significant increase with the increasing sound amplitude. Correspondingly, the reactance first remains constant and then shows a modest decrease as the sound amplitude increases. The nonlinear effect also causes the gradual decrease of the mean bias velocity in company with the marked increase of the amplitude of the fluctuating velocity in the slit. The mean bias velocity decreases to about 80 percent of its linear value at the transition point where reversal flow begins to occur, and further decreases to only 10 percent in the highly nonlinear region. The slit impedance is also presented as a function of frequency and for different aspect ratios. And the effects of frequency and slit geometry are discussed.
机译:数值研究了具有平均偏流的缝隙的声学响应。借助于基于离散涡旋方法和跨度平均三维格林函数的势流模型,可以在统一的理论框架中获得非恒定涡流和狭缝阻抗。数值模拟的重点是狭缝流的声激涡结构,而忽略了粘性阻尼效应。演示了三个代表性的流动特征,即不稳定的射流,涡旋片的卷起和涡流对的形成,以及在狭缝两侧交替出现涡旋脱落的反向流动。这些特征分别对应于低,中和高声音振幅。缝隙的声学行为可以分为线性,过渡和非线性两种形式。在通过三种方式演变过程中,阻力表现为恒定值,随声振幅的增加而略有降低和显着增加。相应地,电抗首先保持恒定,然后随着声音幅度的增加而适度降低。非线性效应还导致平均偏置速度逐渐降低,同时狭缝中波动速度的幅度也显着增加。在开始出现逆流的过渡点处,平均偏置速度降低到其线性值的大约80%,在高度非线性区域则进一步降低到仅10%。缝隙阻抗也作为频率和不同纵横比的函数呈现。并讨论了频率和缝隙几何形状的影响。

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