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A NEW ENERGY-FLUX MODEL OF WAVEGUIDE REVERBERATION BASED ON PERTURBATION THEORY

机译:基于微扰理论的波导管重像能量通量模型

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The modal shallow water reverberation theory and the energy-flux shallow water reverberation theory were combined to get a new energy-flux model of waveguide reverberation based on Perturbation theory. There are only three environmental parameters (P, Q, μ) in the new reverberation model. It has clear physical picture and it is satisfied the waveguide constraint without any adjustable parameters. The new energy-flux reverberation model was compared with the modal reverberation model (full-wave reverberation model). The results show that the new model can explain the shallow water reverberation in most cases. It is shown that the contributions of parameter P and Q are mutual compensated (coupled) for a fixed reverberation data, therefore it is hard to extract both of them simultaneously. Finally, parameters P and μ at different frequencies were extracted from the reverberation data of "Qingdao-2005 experiment" in Yellow sea shallow-water area where the parameter Q hasbeen extracted from mode filtering approach previously.
机译:结合模态浅水混响理论和能量通量浅水混响理论,以扰动理论为基础,建立了波导混响的新能量通量模型。新混响模型中只有三个环境参数(P,Q,μ)。它具有清晰的物理图像,并且在没有任何可调参数的情况下满足了波导约束。将新的能量通量混响模型与模式混响模型(全波混响模型)进行了比较。结果表明,新模型可以解释大多数情况下的浅水混响。结果表明,对于固定的混响数据,参数P和Q的贡献是相互补偿的(耦合的),因此很难同时提取二者。最后,从“青岛-2005年实验”的混响数据中提取了不同频率下的参数P和μ,该数据已事先通过模式滤波方法提取出了参数Q。

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