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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Two-way wave equation-based depth migration using one-way propagators on a bilayer sensor seismic acquisition system
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Two-way wave equation-based depth migration using one-way propagators on a bilayer sensor seismic acquisition system

机译:基于双向波浪方程的深度迁移在双层传感器地震采集系统上使用单向传播者

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摘要

Conventional migration uses the seismic data set recorded at a given depth as one initial condition from which to implement wavefield extrapolation in the depth domain. In using only one initial condition to solve the second-order acoustic wave equation, some approximations are used, resulting in the limitation of imaging angles and inaccurate imaging amplitudes. We use an over/under bilayer sensor seismic data acquisition system that can provide the two initial conditions required to make the second-order acoustic wave equation solvable in the depth domain, and we develop a two-way wave equation depth migration algorithm by adopting concepts from one-way propagators, called bilayer sensor migration. In this new migration method, two-way wave depth extrapolation can be achieved with two one-way propagators by combining the wavefields at two different depths. It makes it possible to integrate the advantages of one-way migration methods into the bilayer sensor system. More detailed bilayer sensor migration methods are proposed to demonstrate the feasibility. In the impulse response tests, the propagating angle of the bilayer sensor migration method can reach up to 90 degrees, which is superior to those of the corresponding one-way propagators. To test the performance, several migration methods are used to image the salt model, including the one-way generalized screen propagator, reverse time migration (RTM), and our bilayer sensor migration methods. Bilayer sensor migration methods are capable of imaging steeply dipping structures, unlike one-way propagators; meanwhile, bilayer sensor migration methods can greatly reduce the numbers of artifacts generated by salt multiples in RTM.
机译:传统的迁移使用以给定深度记录的地震数据集作为在深度域中实现波场推断的一个初始条件。在仅使用一个初始条件来解决二阶声波方程,使用一些近似,导致成像角度的限制和不准确的成像幅度。我们使用超过/下面的双层传感器地震数据采集系统,可以提供使在深度域中的二阶声波方程可解决的二阶声波方程所需的两个初始条件,并且我们通过采用概念来开发双向波浪方程深度迁移算法从单向传播者,称为双层传感器迁移。在这种新的迁移方法中,通过将波场与两个不同的深度组合,可以通过两个单向传播者实现双向波深推断。它可以将单向迁移方法的优点集成到双层传感器系统中。提出了更详细的双层传感器迁移方法来证明可行性。在脉冲响应测试中,双层传感器迁移方法的传播角度可以达到高达90度,这优于相应的单向传播者的那些。为了测试性能,若干迁移方法用于映像盐模型,包括单向广义屏幕传播者,反向时间迁移(RTM)和我们的双层传感器迁移方法。与单向传播者不同,双层传感器迁移方法能够成像陡峭的浸渍结构;同时,双层传感器迁移方法可以大大减少盐倍数在RTM中产生的伪影的数量。

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