变速度GPR数据的地形偏移

N. Allroggen, J. Tronicke, Marcel Delock, Urs Boniger
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引用次数: 4

摘要

典型的探地雷达(GPR)测量的地形起伏很容易在目标深度范围内。在复杂的地下环境中,这需要应用地形迁移方案来可靠地成像地下结构。此外,浅层地下水层引入了GPR传播速度的显著垂直变化,在偏移时应考虑到这一点,以准确成像地下结构。在本文中,我们提出了一种改进的地形迁移方案,该方案能够通过使用均方根(rms)速度近似来解释垂直变速。我们利用合成数据和现场数据来评估我们的迁移方案,这些数据代表了常用探地雷达研究的典型近地表沉积构造。这些例子表明,考虑地形迁移过程中的均方根速度可以显著提高结构成像质量。
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Topographic migration of GPR data with variable velocities
The topographic relief of a typical ground-penetrating radar (GPR) survey can easily be in the range of the target depth. In complex subsurface settings, this requires the application of topographic migration schemes to reliably image subsurface structures. Furthermore, a shallow ground water layer introduces significant vertical variations in GPR propagation velocity, which should be considered during migration to accurately image subsurface structures. In this paper, we present a modified topographic migration scheme, which is able to account for vertical variable velocities by using the root-mean-square (rms) velocity approximation. We evaluate our migration scheme by using synthetic and field data, which represent typical near-surface sedimentary structures often investigated using GPR. These examples demonstrate that a significant improvement in structural imaging quality is achieved by considering rms velocities during topographic migration.
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