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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Fast least-squares reverse time migration of VSP free-surface multiples with dynamic phase-encoding schemes
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Fast least-squares reverse time migration of VSP free-surface multiples with dynamic phase-encoding schemes

机译:具有动态阶段编码方案的VSP自由表面倍数的快速最小平方迁移

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摘要

For vertical seismic profile (VSP), free-surface multiples can provide much wider subsurface illumination when compared with primaries. However, migration of multiple reflections generates not only the desired image of reflection interfaces but also many crosstalk artifacts. Therefore, the least-squares reverse time migration method is used to image the VSP downgoing free-surface multiples (receiver-side ghosts) and iteratively suppress crosstalks, in which full downgoing data (including direct waves) and downgoing multiples are used as sources and observed data, respectively. To reduce the computational cost, we have developed the simultaneous imaging of different common-receiver gathers that are dynamically blended together with iterations through the altered realizations of the phase-encoding function. Relative to the popular encoding function with a combination of random time delays and polarities, only the random polarities can be applied for further increasing the computational efficiency. Synthetic experiments on Sigsbee2B and Pluto1.5 models indicate that the proposed method can effectively eliminate crosstalk artifacts and improve imaging resolution while calculated even more efficiently than reverse time migration of VSP ghosts.
机译:对于垂直地震型材(VSP),与初选相比,自由表面倍数可以提供更宽的地下照明。然而,多次反射的迁移不仅产生了反射接口的所需图像,而且产生许多串扰伪像。因此,最小二乘反向时间迁移方法用于将VSP追溯自由表面倍数(接收器侧重影)和迭代抑制串扰,其中,其中使用完全追溯数据(包括直接波)和衰退倍数作为源和源分别观察到数据。为了降低计算成本,我们开发了不同常见接收器收集的同时成像,通过通过相位编码函数的改变的实现来与迭代动态混合。相对于随机时间延迟和极性的组合的流行编码功能,只能应用随机极性以进一步提高计算效率。 Sigsbee2b和Pluto1.5模型的合成实验表明,该方法可以有效地消除串扰伪像并提高成像分辨率,同时计算比Vsp鬼魂的相反时间迁移更有效地计算得更有效。

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