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Ocean Reverberation: Modeling, Measurements and Inversions

机译:海洋混响:建模,测量和逆转

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Research on ocean reverberation has practical and scientific significance. Much progress has been made in the past three decades to improve our understanding of reverberation. However, there remain important unanswered questions and a real scarcity of high-quality basic research data sets. New progress on the reverberation modeling and the low-frequency (LF) seabed scattering characterization in shallow water (SW) requires three essential conditions: 1). A reliable reverberation model using a physics-based seabed scattering function, 2). Carefully calibrated broadband reverberation data, and 3). A ground truth about the seabed geoacoustic model. Some related work on these topics is introduced in this paper. The energy flux method for SW reverberation is briefly introduced. Integration of this method with physics-based seabed scattering models directly and intuitively results in a general expression for SW reverberation. A simple relationship between the classic scattering cross-section and the modal scattering matrix is derived. Some basic research data sets, including the reverberation level/vertical coherence as a function of time, frequency, depth/hydrophone separation and sea state, are reported. Reverberation data and model predictions are in good agreement, which results in some inversion results. The HF seabed scattering models and the energy flux method-derived reverberation model are validated using LF reverberation broadband data.
机译:海洋混响的研究具有实用性和科学意义。过去三十年来取得了很大的进展,以提高我们对混响的理解。但是,仍然存在重要的未解决问题和高质量基本研究数据集的实际稀缺。混响建模的新进展和浅水(SW)在浅水(SW)中的低频(LF)海底散射特征需要三个基本条件:1)。一种可靠的混响模型,使用基于物理的海底散射功能,2)。精心校准的宽带混响数据和3)。关于海底地理声学模型的实地真相。本文介绍了这些主题的一些相关工作。简要介绍了SW混响的能量通量方法。这种方法与基于物理的海底散射模型的整合直接,直观地导致SW混响的一般表达。推导了经典散射截面和模态散射矩阵之间的简单关系。报告了一些基本研究数据集,包括作为时间,频率,深度/水听器分离和海态的函数的混响水平/垂直相干性。混响数据和模型预测是良好的一致性,这导致一些反转结果。使用LF混响宽带数据验证HF海底散射模型和能量通量方法衍生的混响模型。

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