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首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >Acoustic-vorticity coupling in linearly varying shear flows using the WKB method
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Acoustic-vorticity coupling in linearly varying shear flows using the WKB method

机译:使用WKB方法的线性变化剪切流中的声涡耦合

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摘要

The evolution of acoustic and vorticity perturbations in a two-dimensional incompressible linear flow is investigated. A weighted decomposition of the flow into a hyperbolic part and a rotation part allows continuous spanning of all linear flows such as hyperbolic flow, plane Couette flow and rigid rotation for instance. Using the Kelvin non-modal approach, the equations governing the time evolution of plane wave perturbations are reduced into a system of three first-order ordinary differential equations. This system is analysed using a WKB method where the small parameter ε is the ratio of the shear rate of the flow over the typical frequency of the perturbations. With this method, a basis of three modes naturally appears: two acoustic modes and one vorticity mode. At finite but small ε, couplings between the modes appear when the length of the wavenumber is minimal. For hyperbolic flow, incident vorticity mode generates the two acoustic modes, and an incident acoustic mode generates the other acoustic mode. More generally, for all flows, the hyperbolic part of the flow is responsible of the coupling between acoustic and vorticity modes, but also of the coupling between the two acoustic modes. These phenomena are illustrated by displaying wavepacket evolutions.
机译:研究了二维不可压缩线性流中声学和涡旋扰动的演化。将流加权分解为双曲线部分和旋转部分,可以连续扩展所有线性流,例如双曲线流,平面库埃特流和刚性旋转。使用开尔文非模态方法,将控制平面波扰动时间演化的方程式简化为一个由三个一阶常微分方程组成的系统。使用WKB方法分析该系统,其中小参数ε是流的剪切速率与扰动的典型频率之比。通过这种方法,自然会出现三种模式的基础:两种声学模式和一种涡度模式。在有限但较小的ε下,当波数的长度最小时,模式之间会出现耦合。对于双曲线流动,入射涡度模式生成两个声学模式,而入射声学模式生成另一个声学模式。更一般地,对于所有流,流的双曲线部分负责声学和涡度模式之间的耦合,还负责两个声学模式之间的耦合。这些现象通过显示波包演变来说明。

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