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Geoacoustic Inversion Based on a Vector Hydrophone Array
作者姓名:彭汉书  李风华
作者单位:[1]National Laboratory of Acoustics, Chinese Academy of Sciences, Beijing 100080 [2]Graduate School of the Chinese Academy of Sciences, Beijing 100049
基金项目:Supported by the National Natural Science Foundation of China under Grand No 10574136.
摘    要:We propose a geoacoustic inversion scheme employing a vector hydrophone array based on the fact that vector hydrophone can provide more acoustic field information than traditional pressure hydrophones. Firstly, the transmission loss of particle velocities is discussed. Secondly, the sediment sound speed is acquired by a matchedfield processing (MFP) procedure, which is the optimization in combination of the pressure field and vertical particle velocity field. Finally, the bottom attenuation is estimated from the transmission loss difference between the vertical particle velocity and the pressure. The inversion method based on the vector hydrophone array mainly has two advantages: One is that the MFP method based on vector field can decrease the uncertain estimation of the sediment sound speed. The other is that the objective function based on the transmission loss difference has good sensitivity to the sediment attenuation and the inverted sediment attenuation is independent of source level. The validity of the inverted parameters is examined by comparison of the numerical results with the experimental data.

关 键 词:地声学  水中听音器  排列  物理学
收稿时间:2007-1-25
修稿时间:2007-01-25

Geoacoustic Inversion Based on a Vector Hydrophone Array
PENG Han-Shu,LI Feng-Hua.Geoacoustic Inversion Based on a Vector Hydrophone Array[J].Chinese Physics Letters,2007,24(7):1977-1980.
Authors:PENG Han-Shu  LI Feng-Hua
Institution:National Laboratory of Acoustics, Chinese Academy of Sciences, Beijing 100080Graduate School of the Chinese Academy of Sciences, Beijing 100049
Abstract:We propose a geoacoustic inversion scheme employing a vector hydrophone array based on the fact that vector hydrophone can provide more acoustic field information than traditional pressure hydrophones. Firstly, the transmission loss of particle velocities is discussed. Secondly, the sediment sound speed is acquired by a matched-field processing (MFP) procedure, which is the optimization in combination of the pressure field and vertical particle velocity field. Finally, the bottom attenuation is estimated from the transmission loss difference between the vertical particle velocity and the pressure. The inversion method based on the vector hydrophone array mainly has two advantages: One is that the MFP method based on vector field can decrease the uncertain estimation of the sediment sound speed. The other is that the objective function based on the transmission loss difference has good sensitivity to the sediment attenuation and the inverted sedimentattenuation is independent of source level. The validity of the inverted parameters is examined by comparison of the numerical results with the experimental data.
Keywords:43  30  Pc  43  30  Bp
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