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2D High-Resolution Crosswell Seismic Traveltime Tomography

机译:2D高分辨率Crosswell地震旅行时间断层扫描

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摘要

This paper presents a method for combining the hybrid eikonal solver and the prior velocity information to obtain high-resolution crosswell imaging. The hybrid eikonal solver in this technique can ensure rapid and reliable forward modeling of traveltime field in an unsmoothed velocity model. We also utilize the sonic well logging curve to properly develop an initial reference velocity model, and use the sonic well logging data as the prior information for the inversion part, which can restrict the problem of non-uniqueness. The results of the numerical experiment of traveltime in multi-layer media showed that the hybrid eikonal solver was more accurate than the finite difference method. The case study of an oil field in eastern China demonstrated that our method can derive a high-resolution reconstruction of the subsurface structure by inverting the primary traveltime datasets. These results suggest that even though the eikonal equation is a high frequency approximation to the wavcfield, the hybrid eikonal solver can provide an accurate traveltime field in the forward modelling step of seismic crosswell tomography, which is critical to ensure high-resolution invert imaging in a highly heterogeneous environment.
机译:本文介绍了混合eikonal求解器的方法和先前速度信息以获得高分辨率的交叉成像。这种技术中的混合急性求解器可以保证无缝速度模型中的旅行时间字段的快速可靠地建模。我们还利用Sonic井测井曲线来适当地开发初始参考速度模型,并使用Sonic井测井数据作为反转部分的先前信息,这可以限制非唯一性的问题。多层介质中旅行时间的数值实验结果表明,混合动力eikonal求解器比有限差分法更准确。中国东部石油场的案例研究证明,我们的方法通过反转主要旅行时间数据集可以推导出地下结构的高分辨率重建。这些结果表明,即使eikonal方程是对波形域的高频逼近,混合eikonal求解器也可以在地震周边断层扫描的前向建模步骤中提供精确的行进时间字段,这对于确保高分辨率反转成像是至关重要的高度异质的环境。

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