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首页> 外文期刊>Annals of the American Thoracic Society >Inverse Gaussian-beam common-reflection-point-stack imaging in crosswell seismic tomography
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Inverse Gaussian-beam common-reflection-point-stack imaging in crosswell seismic tomography

机译:在Crosswell地震层析造影中逆高斯光束共模堆叠成像

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摘要

To solve problems in small-scale and complex structural traps, the inverse Gaussian-beam stack-imaging method is commonly used to process crosswell seismic wave reflection data. Owing to limited coverage, the imaging quality of conventional ray-based crosswell seismic stack imaging is poor in complex areas; moreover, the imaging range is small and with sever interference because of the arc phenomenon in seismic migration. Thus, we propose the inverse Gaussian-beam stack imaging, in which Gaussian weight functions of rays contributing to the geophones energy are calculated and used to decompose the seismic wavefield. This effectively enlarges the coverage of the reflection points and improves the transverse resolution. Compared with the traditional VSP-CDP stack imaging, the proposed methods extends the imaging range, yields higher horizontal resolution, and is more adaptable to complex geological structures. The method is applied to model a complex structure in the K-area. The results suggest that the wave group of the target layer is clearer, the resolution is higher, and the main frequency of the crosswell seismic section is higher than that in surface seismic exploration The effectiveness and robustness of the method are verified by theoretical model and practical data.
机译:为了解决小规模和复杂的结构陷阱中的问题,逆高斯梁堆叠成像方法通常用于处理Crosswell地震波反射数据。由于覆盖率有限,传统的基于射线的Crosswell地震堆叠成像的成像质量在复杂地区差;此外,由于地震迁移中的弧现象,成像范围小并且具有切断干扰。因此,我们提出了逆高斯光束堆叠成像,其中计算贡献到地理位音能量的光线的高斯权重函数,并用于分解地震波场。这有效地扩大了反射点的覆盖范围并提高了横向分辨率。与传统的VSP-CDP堆叠成像相比,所提出的方法延伸了成像范围,产生更高的水平分辨率,并且更适应复杂的地质结构。该方法应用于模拟K区中的复杂结构。结果表明,目标层的波组更清晰,分辨率较高,交叉壁剖面的主频率高于表面地震勘探,通过理论模型和实践验证了该方法的有效性和鲁棒性数据。

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