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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Acoustic-elastic coupled equation for ocean bottom seismic data elastic reverse time migration
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Acoustic-elastic coupled equation for ocean bottom seismic data elastic reverse time migration

机译:海底地震数据的声弹耦合方程弹性逆时偏移

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Conventionally, multicomponent geophones used to record the elastic wavefields in the solid seabed are necessary for ocean bottom seismic (OBS) data elastic reverse time migration (RTM). Particle velocity components are usually injected directly as boundary conditions in the elastic-wave equation in the receiver-side wavefield extrapolation step, which causes artifacts in the resulting elastic images. We have deduced a first-order acoustic-elastic coupled equation (AECE) by substituting pressure fields into the elastic velocity-stress equation (EVSE). AECE has three advantages for OBS data over EVSE when performing elastic RTM. First, the new equation unifies wave propagation in acoustic and elastic media. Second, the new equation separates P-waves directly during wavefield propagation. Third, three approaches are identified when using the receiver-side multicomponent particle velocity records and pressure records in elastic RTM processing: (1) particle velocity components are set as boundary conditions in receiver-side vectorial extrapolation with the AECE, which is equal to the elastic RTM using the conventional EVSE; (2) the pressure component may also be used for receiver-side scalar extrapolation with the AECE, and with which we can accomplish PP and PS images using only the pressure records and suppress most of the artifacts in the PP image with vectorial extrapolation; and (3) ocean-bottom 4C data can be simultaneously used for elastic images with receiver-side tensorial extrapolation using the AECE. Thus, the AECE may be used for conventional elastic RTM, but it also offers the flexibility to obtain PP and PS images using only pressure records.
机译:常规上,用于记录固体海底弹性波场的多分量检波器对于海底地震(OBS)数据弹性逆时偏移(RTM)是必需的。通常在接收器侧波场外推步骤中,将粒子速度分量作为边界条件直接注入到弹性波方程中,这会在生成的弹性图像中造成伪影。通过将压力场代入弹性速度-应力方程(EVSE),我们推导出了一阶声弹耦合方程(AECE)。执行弹性RTM时,与EVSE相比,AECE具有OBS数据的三个优势。首先,新方程式统一了声波和弹性介质中的波传播。其次,新方程在波场传播期间直接分离P波。第三,在弹性RTM处理中使用接收器侧多分量粒子速度记录和压力记录时,确定了三种方法:(1)在AECE的接收器侧矢量外推中将粒子速度分量设置为边界条件,这等于使用常规EVSE的弹性RTM; (2)压力分量也可以用于AECE的接收器侧标量外推,利用它我们可以仅使用压力记录来完成PP和PS图像,并通过矢量外推来抑制PP图像中的大部分伪像; (3)利用AECE,可以通过接收器侧张量外推将海底4C数据同时用于弹性图像。因此,AECE可以用于常规的弹性RTM,但它也提供了仅使用压力记录来获取PP和PS图像的灵活性。

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