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首页> 外文期刊>The Leading Edge >The impact of multifocusing in the processing of land 3D seismic data in a fold and thrust belt setting: Ranquil Norte Block, Neuquen Basin, Argentina
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The impact of multifocusing in the processing of land 3D seismic data in a fold and thrust belt setting: Ranquil Norte Block, Neuquen Basin, Argentina

机译:褶皱和逆冲带环境中多聚焦对陆地3D地震数据处理的影响:阿根廷内乌肯盆地的Ranquil Norte Block

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摘要

A total of 270 km2 of 3D seismic data was acquired in the southeast corner of the Ranquil Norte Block in the north of the fold and thrust belt area of the Neuquen Basin, west of Argentina. The survey was acquired in an area with hard topography, disturbing anthropomorphic conditions, and very complex subsurface geology. All of these situations negatively contributed to the signal-to-noise ratio of the resulting data. Therefore, and considering a structural target only, the main objective of the seismic processing sequence was the mitigation of the impact of such geologic and anthropomorphic noise on the data. Initially, a tailored processing sequence was performed, including noise suppression in the cross-spread domain. This first processing approach included Kirchhoff prestack time migration, structural seismic interpretation, velocity modeling, tomography, and Kirchhoff prestack depth migration. Given that multifocusing can deliver high-resolution subsurface images in areas with similar challenging conditions, this processing technique was then included in the processing workflow. Naturally, this second approach necessarily involved a reinterpretation of the structural model, a rebuilding of the velocity model, and a new tomographic computation. A significant improvement of the results was achieved in this manner.
机译:在阿根廷西部内乌肯盆地褶皱和逆冲带北部以北的Ranquil Norte区块的东南角,共采集了270 km2的3D地震数据。该调查是在地形硬,干扰拟人条件和地下地质非常复杂的地区进行的。所有这些情况都会对所得数据的信噪比产生负面影响。因此,仅考虑结构目标,地震处理序列的主要目标就是减轻这种地质和拟人噪声对数据的影响。最初,执行了定制的处理序列,包括交叉扩展域中的噪声抑制。第一种处理方法包括基尔霍夫叠前时间偏移,结构地震解释,速度模拟,层析成像和基尔霍夫叠前深度偏移。鉴于多焦点可以在具有类似挑战性条件的区域中提供高分辨率的地下图像,因此该处理技术已包括在处理工作流程中。自然,第二种方法必然涉及结构模型的重新解释,速度模型的重建以及新的层析成像计算。通过这种方式可以显着改善结果。

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