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Calculation of the Acoustic Spectrum of a Cylindrical Vortex in Viscous Heat-Conducting Gas Based on the Navier–Stokes Equations

机译:基于Navier–Stokes方程的粘性导热气体中圆柱涡旋的声谱计算

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An extremely interesting problem in aero-hydrodynamics is the sound radiation of a single vortical structure. Currently, this type of problem is mainly considered for an incompressible medium. In this paper a method was developed to take into account the viscosity and thermal conductivity of gas. The acoustic radiation frequency of a cylindrical vortex on a flat wall in viscous heat-conducting gas (air) has been investigated. The problem is solved on the basis of the Navier–Stokes equations using the small initial vorticity approach. The power expansion of unknown functions in a series with a small parameter (vorticity) is used. It is shown that there are high-frequency oscillations modulated by a low-frequency signal. The value of the high frequency remains constant for a long period of time. Thus the high frequency can be considered a natural frequency of the vortex radiation. The value of the natural frequency depends only on the initial radius of the cylindrical vortex, and does not depend on the intensity of the initial vorticity. As expected from physical considerations, the natural frequency decreases exponentially as the initial radius of the cylinder increases. Furthermore, the natural frequency differs from that of the oscillations inside the initial cylinder and in the outer domain. The results of the paper may be of interest for aeroacoustics and tornado modeling.
机译:空气流体动力学中一个非常有趣的问题是单个涡旋结构的声辐射。当前,主要针对不可压缩的介质考虑这种类型的问题。在本文中,开发了一种方法来考虑气体的粘度和热导率。研究了粘性导热气体(空气)在平面壁上的圆柱形涡旋的声辐射频率。该问题是使用较小的初始涡度方法基于Navier-Stokes方程解决的。使用参数(涡度)小的系列中未知函数的幂展开。结果表明,存在由低频信号调制的高频振荡。高频值在很长一段时间内保持恒定。因此,高频可以被认为是涡旋辐射的固有频率。固有频率的值仅取决于圆柱形涡旋的初始半径,而不取决于初始涡旋的强度。正如从物理考虑所期望的那样,固有频率随着圆柱体的初始半径增加而呈指数下降。此外,固有频率不同于初始圆柱体内和外域的振荡频率。本文的结果可能对航空声学和龙卷风建模感兴趣。

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