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Sequential Inversion for Geoacoustic Parameters in the South China Sea Using Modal Dispersion Curves

机译:模态色散曲线南海地球路路道参数的顺序反演

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This paper presents an inversion scheme that uses two wideband explosive sources based on modal dispersion characteristics to synchronously obtain sound speed profile and bottom parameters. The signal received on a single hydrophone in a vertical line array is decomposed into a series of propagation modes within the framework of normal mode theory, and the dispersive characteristics of the modes are analyzed using time-frequency analysis. Time-warping transform is applied to resolve the propagation modes of explosive sources from the South China Sea in 2007. The relative travel time differences of the propagation modes are used to invert the environmental parameters, including empirical orthogonal function coefficients, sediment thickness, sound speed, density, basement sound speed and density. Sediment density and basement density are constrained by Hamilton's empirical relationship, and relative mode energy ratio is used to estimate the bottom attenuation coefficient. An adaptive simplex simulated annealing algorithm is used for the inversion. The reliability of the inversion results is verified via uncertainty analysis. The transmission loss calculated using the deduced parameters matches the experimental data well.
机译:本文提出了使用基于模式色散特性同步获得声速剖面和底部参数的两个宽带炸药源的反演方案。上在垂直线上阵列中的单个水听器接收到的信号被分解成一系列的正常模式理论的框架内传播模式和模式的色散特性所使用的时间 - 频率分析来分析。时间扭曲变换应用于解决的从中国南海炸药源的传播模式在2007年的传播模式的相对传播时间差被用来反转环境参数,包括经验正交函数系数,沉积厚度,声速,密度,地下室声速和密度。沉积物密度和地下室密度由Hamilton的经验关系的约束,和相对模式能量比用于估计底部衰减系数。自适应单纯形模拟退火算法被用于反转。反演结果的可靠性的不确定性通过分析验证。使用推导出的参数计算出的传输损失的实验数据匹配良好。

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