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Statics corrections for shallow seismic refraction data

机译:浅层地震折射数据的静校正

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摘要

The determination of seismic velocities in refractors for near-surface seismic refraction investigations is an ill-posed problem. Small variations in the computed time parameters can result in quite large lateral variations in the derived velocities, which are often artefacts of the inversion algorithms. Such artefacts are usually not recognized or corrected with forward modelling. Therefore, if detailed refractor models are sought with model-based inversion, then detailed starting models are required. The usual source of artefacts in seismic velocities is irregular refractors. Under most circumstances, the variable migration of the generalized reciprocal method (GRM) is able to accommodate irregular interfaces and generate detailed starting models of the refractor. However, where the very-near-surface environment of the Earth is also irregular, the efficacy of the GRM is reduced, and weathering corrections can be necessary. Standard methods for correcting for surface irregularities are usually not practical where the very-near-surface irregularities are of limited lateral extent. In such circumstances, the GRM smoothing statics method (SSM) is a simple and robust approach, which can facilitate more-accurate estimates of refractor velocities.
机译:确定用于近地表地震折射研究的折射器中的地震速度是一个不适定的问题。计算出的时间参数的细微变化会导致导出的速度产生较大的横向变化,这通常是反演算法的伪影。此类伪像通常无法通过正向建模来识别或纠正。因此,如果通过基于模型的反演来寻找详细的折射模型,那么就需要详细的起始模型。地震速度中伪像的通常来源是不规则折射镜。在大多数情况下,广义倒数方法(GRM)的变量迁移能够适应不规则的界面并生成折射器的详细起始模型。但是,在地球的近地表环境也不规则的情况下,GRM的效力会降低,因此可能需要进行风化校正。在非常近的表面不规则具有有限的横向范围的情况下,校正表面不规则的标准方法通常是不实用的。在这种情况下,GRM平滑静态方法(SSM)是一种简单而健壮的方法,可以促进对折射器速度的更准确估计。

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