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The dynamic characteristics of a pulsating turbulent flow of compressible gas in a pipe under the effect of time-average flow

机译:时间平均流量影响下管道中可压缩气体脉动湍流的动态特性

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摘要

The effect of time-average flow with the values of Mach number M = 0.03-0.3 on the transfer functions of a gas pipeline is investigated. A set of cross section-averaged equations of motion, continuity, and energy, written in a narrow-channel approximation, are solved by the finite difference method. The variability of the gas density and sound velocity is taken into account. The heat flux to the wall is assumed to be constant. The wall friction is calculated using the data previously obtained by solving a nonstationary equation of motion simultaneously with relaxation equations for turbulent stress and turbulent viscosity. The calculations are performed in three characteristic frequency regions, namely, regions of quasi-stationary and frozen turbulence and an intermediate region. It is demonstrated that the effect of time-average flow leads to a decrease in the amplitudes of oscillation of velocity and pressure in the resonance mode.
机译:研究了马赫数M = 0.03-0.3的时间平均流量对输气管道传递函数的影响。通过有限差分法求解以窄通道近似表示的一组截面平均运动,连续性和能量方程。考虑到气体密度和声速的可变性。假定到壁的热通量是恒定的。使用先前通过求解运动的非平稳方程以及湍流应力和湍流粘度松弛方程同时获得的数据来计算壁面摩擦力。在三个特征频率区域中进行计算,即准平稳和冻结湍流区域以及中间区域。结果表明,时间平均流的影响导致共振模式下速度和压力振荡幅度的减小。

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