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The Damping Coefficient of a Pressure Wave tinder Conditions of Pulsating Turbulent Flow of Gas in a Channel

机译:通道中脉动气体脉动流的压力波振动器条件的阻尼系数

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摘要

The available results of experimental and prediction studies of the damping coefficient and phase propagation velocity of waves under conditions of pulsating turbulent flow in a narrow channel are reviewed and analyzed. It is demonstrated that the concept of complex damping coefficient may be introduced strictly on condition of certain restrictions imposed on an oscillating and time average flow. The dependences of the complex damping coefficient on the oscillation frequency and on the Reynolds and Mach numbers of time average flow are analyzed. The calculations are performed using the data on the relative amplitude and phase of oscillation of the tangential wall stress, obtained with the aid of the turbulence model including the relaxation equations for turbulent viscosity and tangential stress. It is demonstrated that quasi-stationary models of turbulence are invalid in the region of relatively high frequencies. Numerical simulation based on the difference solution of a set of channel cross section-averaged equations of motion, continuity, and energy is performed with due regard for the experimental conditions and measuring techniques. The calculation results agree well with the experimental data.
机译:对窄通道脉动湍流条件下波的阻尼系数和相位传播速度的实验和预测研究的可用结果进行了回顾和分析。结果表明,复阻尼系数的概念可以严格地在对振荡和时间平均流量施加一定限制的条件下引入。分析了复阻尼系数对振荡频率以及时均流的雷诺数和马赫数的依赖性。使用与切向壁应力的相对振幅和振荡相位有关的数据进行计算,该数据是借助湍流模型获得的,该模型包括湍流粘度和切向应力的松弛方程。结果表明,湍流的准平稳模型在相对较高的频率范围内是无效的。基于一组通道横截面平均运动,连续性和能量方程的差分解决方案,进行了数值模拟,同时充分考虑了实验条件和测量技术。计算结果与实验数据吻合良好。

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