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应用地球物理  2015, Vol. 12 Issue (3): 334-342    DOI: 10.1007/s11770-015-0512-2
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三维多方向边缘探测技术识别盐丘的新方法
Asjad Amin1 and Mohamed Deriche1
1. 法赫德国王石油矿产大学能源和地理信息处理中心
A new approach for salt dome detection using a 3D multidirectional edge detector
Asjad Amin1 and Mohamed Deriche1
1. Center for Energy and Geo Processing (CeGP) at King Fahd University of Petroleum & Minerals.
 全文: PDF (383 KB)   HTML ( KB)   输出: BibTeX | EndNote (RIS)      背景资料
摘要 对3D地震数据进行盐丘构造的精确识别在地震数据分析应用中非常重要。本文提出了对三维偏移地震数据进行盐丘构造边界识别的新方法。本算法克服了目前边界识别技术中的不足,即二维数据只考虑x方向(测线方向)和y方向(垂直测线方向)的边界问题,三维数据只考虑x方向(测线方向)、y方向(垂直测线方向)和z方向(时间)的边界问题。算法结合了沿对角线方向和沿x、y、z方向计算得出的三维梯度,以达到对盐丘边界的精确探测。沿x、y、z和沿对角线方向的边界的联合检测保证了盐丘边界倾面表现为弱反射时本方法仍能获得较好的效果。不同与其它盐丘的边界及构造检测技术,本文提出的算法不依赖地震数据中的振幅变化。将本方法应用至公开的荷兰海洋F3号区块数据测试中,结果证明,本文方法对盐丘边界的探测精度高于单独使用基于梯度或基于结构的方法。更重要的是,算法计算效率高,可以满足实时实现及调度。
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Asjad Amin and Mohamed Deriche
关键词盐丘   地震解释   三维边界检测   三维Sobel   多方向边缘检波器     
Abstract: Accurate salt dome detection from 3D seismic data is crucial to  different seismic data analysis applications. We present a new edge based approach for salt dome detection in migrated 3D seismic data. The proposed algorithm overcomes the drawbacks of existing edge-based techniques which only consider edges in the x (crossline) and y (inline) directions in 2D data and the  x (crossline), y (inline), and z (time) directions in 3D data. The algorithm works by combining 3D gradient maps computed along diagonal directions and those computed in x, y, and z directions to accurately detect the boundaries of salt regions. The combination of x, y, and z directions and diagonal edges ensures that the proposed algorithm works well even if the dips along the salt boundary are represented only by weak reflectors. Contrary to other edge and texture based salt dome detection techniques, the proposed algorithm is independent of the amplitude variations in seismic data. We tested the proposed algorithm on the publicly available Netherlands offshore F3 block. The  results suggest that the proposed algorithm can detect salt bodies with high accuracy than existing gradient based  and texture-based techniques when used separately. More importantly, the proposed approach is shown to be computationally efficient allowing for real time implementation and deployment.
Key wordsSalt dome   seismic interpretation   3D edge detection   3D Sobel   multidirectional edge detector   
收稿日期: 2015-08-12;
基金资助:

The work presented in this paper has been supported by the Center for Energy and Geo Processing (CeGP) at King Fahd University of Petroleum & Minerals (KFUPM), under Project no. GTEC 1401-1402.

引用本文:   
Asjad Amin and Mohamed Deriche. 三维多方向边缘探测技术识别盐丘的新方法[J]. 应用地球物理, 2015, 12(3): 334-342.
Asjad Amin and Mohamed Deriche. A new approach for salt dome detection using a 3D multidirectional edge detector[J]. APPLIED GEOPHYSICS, 2015, 12(3): 334-342.
 
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[1] Mohamed Deriche. 基于结构属性排序的稳定的盐丘探测[J]. 应用地球物理, 2016, 13(3): 449-458.
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