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Numerical Simulations of the Flow and Sound Fields of a Heated Axisymmetric Pulsating Jet

机译:轴对称脉动射流加热流场和声场的数值模拟

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The flow and sound fields of a heated axisymmetric pulsating jet have been investigated by direct numerical solution of the compressible Navier-Stokes equations in cylindrical coordinates using highly accurate numerical methods. Effects of pulsating frequency and amplitude on the flow structure and sound generation have been examined. The results show that the organized unsteadiness associated with the periodic pulsation leads to a variety of vortical structures in the pulsating flow field. The pulsating frequency and amplitude strongly affect the vortical flow structures and the radiated sound fields. At the higher pulsating frequency, the vortices in the pulsating jet become smaller and the radiated sound field has smaller wavelength. The pressure fluctuation amplitude of the sound field is inversely proportional to the distance from the sound source. Both the larger pulsating frequency and larger pulsating amplitude lead to stronger sound emissions from the pulsating jet. It has been found that the pressure fluctuation amplitude of the sound field is approximately proportional to the pulsating amplitude and frequency.
机译:使用高精度数值方法,通过圆柱坐标中可压缩Navier-Stokes方程的直接数值解,研究了加热的轴对称脉动射流的流场和声场。研究了脉动频率和幅度对流动结构和声音产生的影响。结果表明,与周期性脉动相关的有组织的不稳定性导致脉动流场中的各种涡旋结构。脉动的频率和幅度强烈影响旋涡的流动结构和辐射声场。在较高的脉动频率下,脉动射流中的涡流变小,并且辐射声场具有较小的波长。声场的压力波动幅度与距声源的距离成反比。较大的脉动频率和较大的脉动幅度都会导致脉动射流发出更强的声音。已经发现,声场的压力波动幅度大约与脉动幅度和频率成比例。

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