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Influence of exit impedance on finite difference solutions of transient acoustic mode propagation in ducts

机译:出口阻抗对管道内瞬态声模传播有限差分解的影响

摘要

The time-dependent governing acoustic-difference equations and boundary conditions are developed and solved for sound propagation in an axisymmetric (cylindrical) hard-wall duct without flow and with spinning acoustic modes. The analysis begins with a harmonic sound source radiating into a quiescent duct. This explicit iteration method then calculates stepwise in real time to obtain the steady solutions of the acoustic field. The transient method did not converge to the steady-state solution for cutoff acoustic duct modes. This has implications as to its use in a variable-area duct, where modes may become cutoff in the smal-area portion of the duct. For single cutoff mode propagation the steady-state impedance boundary condition produced acoustic reflections during the initial transient that caused finite instabilities in the numerical calculations. The stability problem is resolved by reformulating the exit boundary condition. Example calculations show good agreement with exact analytical and numerical results for forcing frequencies above, below, and nearly at the cutoff frequency.
机译:针对在轴对称(圆柱)硬壁管中没有流动且具有旋转声模的声传播,开发并求解了与时间有关的控制声差方程和边界条件。分析从谐波声源辐射到静态管道开始。然后,该显式迭代方法将实时逐步计算,以获得声场的稳定解。瞬态方法并未收敛到截止声导管模式的稳态解。这涉及到它在可变面积导管中的使用,在可变面积导管中,模式可能会在导管的小面积部分被切断。对于单截止模式传播,稳态阻抗边界条件会在初始瞬变过程中产生声反射,从而在数值计算中引起有限的不稳定性。通过重新设计出口边界条件可以解决稳定性问题。实例计算表明,对于强迫高于,低于和接近截止频率的频率,其精确的分析和数值结果具有很好的一致性。

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    Baumeister K. J.;

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  • 年度 1981
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