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Denoise Investigation on Prestack Reverse time Migration Based on GPU/CPU Collaborative Parallel Accelerating Computation

机译:基于GPU / CPU协同并行加速计算的叠前逆时偏移降噪研究

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Based on two-way wave equation, prestack reverse time migration (RTM) overcomes dip limitation, and can image complicated geological body with high precision. However, since the massy storage, large amount of computation, low frequency noise, the industrialization process of this approach develops slowly. High order finite difference algorithm is used to calculate reverse time migration in the paper. By GPU/CPU collaborative parallel accelerating computation, the computation efficiency of RTM has been greatly improved. The random boundary condition is adopted to obtain wavefield information. The paper discusses the theory and specific steps of Laplacian denoise approach. The tests on Marmousi and Sigsbee model illustrate that, by Laplacian operator denoise approach, prestack reverse time migration can image complicated geological body effectively and precisely. This approach has a wide application prospect.
机译:基于双向波动方程,叠前逆时偏移(RTM)克服了倾角限制,并可以对复杂的地质体进行高精度成像。然而,由于海量存储,大量计算,低频噪声,这种方法的工业化进程发展缓慢。本文采用高阶有限差分算法计算逆时偏移。通过GPU / CPU协同并行加速计算,极大地提高了RTM的计算效率。采用随机边界条件获得波场信息。本文讨论了拉普拉斯降噪方法的理论和具体步骤。 Marmousi和Sigsbee模型的测试表明,通过拉普拉斯算子降噪方法,叠前逆时偏移可以有效而精确地成像复杂的地质体。该方法具有广阔的应用前景。

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