波导中声脉冲的主动吸收

Y. Popov
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引用次数: 0

摘要

研究对象和目的。以一个数值模型为例,研究了一种主动吸收反射边界短声信号的方法。对具有刚性壁的虚拟波导模型进行了分析,模拟了一端具有音调内容的脉冲和另一端具有音调内容的脉冲的主动吸收。研究的目的是利用一个特定的信号吸收问题来评估可实现的方法效率。材料和方法。利用数值模型,采用有限元法对信号传播进行估计。根据波在波导中的传播理论,用已知的解析解对数值计算进行了验证。主要的结果。以一个数值模型为例,突出了主动信号吸收工具设计中必须解决的关键问题。为了实现基于研究结果的9db效率,详细考虑了波导模型和声信号的约束。结论。这一具体问题表明,仅用有源方法几乎不可能实现对短信号的完全吸收而不反射。确定了它们的实施条件和方法,没有这些条件和方法,活性吸收法就不可能取得任何显著效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Active absorption of acoustic pulse in waveguide
Object and purpose of research. A numerical model is taken as example to consider an active method of absorption for a short acoustic signal from reflecting boundary. Analysis is carried out on a model of virtual waveguide with rigid walls where the pulse with tonal content at one end and active absorption of the same at the other end is simulated. The purpose of studies is to assess the achievable method efficiency using a specific problem of signal absorption. Materials and methods. Signal propagation is estimated by finite element method using numerical model. The numerical calculations were verified by known analytical solutions according to the theory of wave propagation in waveguides. Main results. A numerical model is used as example to highlight the key tasks which have to be solved in the design of active signal absorption tools. Detailed consideration is given to the constraints of the waveguide model and acoustic signal to achieve the 9 dB efficiency obtained based on study results. Conclusion. The specific problem is taken to show that it is practically impossible to achieve full absorption of a short signal without reflection using only active methods. Conditions and ways of their implementation are identified without which it is impossible to achieve any significant effect by active absorption method.
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