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3-D Refraction Traveltime Tomography Algorithm Based on Adjoint State Techniques

机译:基于伴奏状态技术的3-D折射行车断层扫描算法

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Classical 3-D refraction traveltime tomography algorithms may suffer from computational limitations due to the large datasets that come from current seismic acquisition surveys. To overcome these issues, we suggest a 3-D refraction tomography algorithm based on adjoint state techniques to derive the gradient of the traveltime misfit function. We use the Eikonal equation for the forward modelling, and iterate with a conjugate gradient method.A3-D synthetic example with a realistic size acquisition demonstrates the efficiency and the great potential of the adjoint state method for 3-D applications of refraction tomography.
机译:经典的3-D折射行程断层扫描算法可能由于电流地震采集调查的大型数据集而受到计算限制。为了克服这些问题,我们建议一种基于伴随状态技术的三维折射断层扫描算法来导出旅行时间错误函数的梯度。我们使用前瞻性建模的eikonal方程,并用缀合物梯度方法迭代。具有现实尺寸采集的A3-D合成示例演示了折射断层扫描的3-D应用的伴随状态方法的效率和巨大潜力。

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