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Nonlinear gas oscillations in pipes. Part 1. Theory

机译:管道中的非线性气体振荡。第一部分。理论

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摘要

The problem of forced acoustic oscillations in a pipe is studied theoretically. The oscillations are produced by a moving piston in one end of the pipe, while a variety of boundary conditions ranging from a completely closed to a completely open mouth at the other end are considered. All these boundary conditions are modelled by two parameters: a length correction and a reflexion coefficient equivalent to the acoustic impedance.ududThe linear theory predicts large amplitudes near resonance and nonlinear effects become crucially important. By expanding the equations of motion in a series in the Mach number, both the amplitude and wave form of the oscillation are predicted there.ududIn both the open- and closed-end cases the need for shock waves in some range of parameters is found. The amplitude of the oscillation is different for the two cases, however, being proportional to the square root of the piston amplitude in the closed-end case and to the cube root for the open end.
机译:从理论上研究了管道中的强迫声振荡问题。振荡是由管道一端的移动活塞产生的,同时考虑了从另一端完全闭合到完全张开的各种边界条件。所有这些边界条件均由两个参数建模:长度校正和等效于声阻抗的反射系数。 ud ud线性理论预测共振附近的大振幅,非线性效应变得至关重要。通过以Mach数扩展一系列运动方程,可以预测振动的振幅和波形。 ud ud在开放式和封闭式情况下,在某些参数范围内都需要冲击波被发现。两种情况下的振动幅度都不同,但是在封闭端情况下,其振幅与活塞振幅的平方根成正比,在开放端情况下,其振幅与立方根成正比。

著录项

  • 作者

    Jimenez J.;

  • 作者单位
  • 年度 1973
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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