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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Adjoint-state reverse time migration of 4C data: Finite-frequency map migration for marine seismic imaging
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Adjoint-state reverse time migration of 4C data: Finite-frequency map migration for marine seismic imaging

机译:4C数据的伴随状态逆时偏移:用于海洋地震成像的有限频率图偏移

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Recent advances in marine seismic acquisition allow for the recording of vector-acoustic ([VA] pressure and particle velocity) seismic data from dual-source configurations, i.e., using monopole as well as dipole sources. VA reverse time migration (RTM) can be custom designed to accurately handle amplitude and directivity information from 4C seismic data. We present a method for multicomponent RTM that is based on an adjointstate formulation using the full VA wave equations for pressure and corresponding displacement fields. This method takes advantage of the directional finite-frequency information contained in the 4C acoustic fields by using source and receiver weighting operators in the adjoint-state imaging scheme. With this adjoint-state method, the source and receiver radiation properties are tailored by choosing specific weighting operators. Weighting operators were chosen so that source-and receiverside ghost arrivals are jointly migrated with primary energy. Because the dipole field components (e.g., components of particle displacement or acceleration) are proportional to the spatial gradient components of the pressure field, our method is in fact a formulation for reverse-time map migration that images pressure fields while jointly using the directional information contained in its full 3C gradients. As a result, our reverse time 4C map migration method yields less aperture-and samplingrelated artifacts when compared to imaging of the pressure-only or 2C seismic data. In addition, our method sets a framework for full-waveform inversion using dual-source 4C seismic data. We demonstrated our findings with synthetic data, including a subsalt imaging example.
机译:海洋地震采集的最新进展允许记录来自双源配置(即使用单极和偶极源)的矢量声([VA]压力和粒子速度)地震数据。 VA逆时偏移(RTM)可以进行定制设计,以准确处理4C地震数据中的振幅和方向性信息。我们提出了一种基于多态RTM的方法,该方法基于伴随状态公式,使用了完整的VA波动方程用于压力和相应的位移场。该方法通过在伴随状态成像方案中使用源和接收器加权运算符来利用4C声场中包含的定向有限频率信息。使用这种伴随状态方法,可以通过选择特定的加权运算符来定制源和接收器的辐射属性。选择加权算子是为了使源侧和接收器侧幻影到达与一次能量一起迁移。因为偶极子场分量(例如,粒子位移或加速度的分量)与压力场的空间梯度分量成比例,所以我们的方法实际上是一种反向时间图迁移的公式,该映射可同时使用方向信息对压力场进行成像包含在其完整的3C渐变中。结果,与仅压力或2C地震数据的成像相比,我们的逆时4C地图偏移方法产生的孔径和采样相关伪像更少。此外,我们的方法为使用双源4C地震数据的全波形反演建立了框架。我们用合成数据证明了我们的发现,包括一个盐下成像实例。

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