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Seismic identification method of low-order strike-slip faults in complex structural areas

A strike-slip fault and seismic identification technology, applied in the field of petroleum exploration, can solve the problems of low quality of seismic data, difficult identification, complex structural background, etc., and achieve the effect of high precision and high calculation efficiency.

Inactive Publication Date: 2018-02-13
CHINA UNIV OF PETROLEUM (EAST CHINA)
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The tomographic image enhancement technologies mainly include adaptive directional filtering technology, boundary-preserving filtering technology and edge detection technology. The most commonly used edge enhancement technology uses differential operators that are sensitive to step changes in pixel gray levels to reflect discontinuity features and special rock features. Sexual body contours, such as Robert operator, Sobel operator, Prewitt operator, Laplacian operator, Canny operator, etc. Compared with other operators, Sobel operator has weighted the influence of pixel position, which can reduce edge blur degree, so the effect is better, and without considering the noise, the obtained edge information error does not exceed 7 degrees, but the extracted edge is relatively thick and needs to be refined, and the selection of the conventional threshold directly affects the detection result , and failed to carry out targeted treatment for faults in different directions
[0004] Therefore, under the premise of complex structural background, low-quality seismic data, unobvious strike-slip throw, and short fault extension distance, low-order strike-slip faults are highly concealed and difficult to identify, which requires the combination of advanced seismic processing technology and mathematical algorithms , to improve the Sobel operator to highlight the characterization results for faults in different directions, and no relevant reports have been seen so far

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  • Seismic identification method of low-order strike-slip faults in complex structural areas
  • Seismic identification method of low-order strike-slip faults in complex structural areas
  • Seismic identification method of low-order strike-slip faults in complex structural areas

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Embodiment Construction

[0019] Such as figure 1 As shown in , the seismic identification method for low-order strike-slip faults in complex structural areas, the steps are as follows:

[0020] Step 1: Analyze the quality of post-stack seismic data, the specific method is as follows:

[0021] Collect the existing post-stack time domain or depth domain seismic data, load the existing interpretation system, determine and track the top-bottom reflection time of the target layer to be analyzed in three-dimensional space, obtain the target short-time window data volume, and perform short-time window Discrete Fourier transform or maximum entropy spectral estimation to generate frequency domain phase spectrum data volume;

[0022] Step 2: Process and obtain the dominant frequency division phase band, the specific method is as follows:

[0023] On the seismic interpretation visualization platform, observe the distribution of different frequency slices and phase lags, select the phase slices with clear main ...

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Abstract

The invention belongs to the field of petroleum exploration, and in particular relates to a seismic identification method for low-order strike-slip faults in complex structural areas. The seismic identification method for low-order strike-slip faults in complex structural areas, the steps are as follows: analyze the quality of post-stack seismic data, process to obtain the dominant frequency division phase band, process to obtain the Sobel operator in the main direction, process to obtain the Sobel operator in any direction, and extract multi-directional Low-order strike-slip fault system to verify the reliability of low-order strike-slip faults. The invention is suitable for seismic identification and reliability verification of low-order strike-slip faults in any complex structural belt, can directly reflect the combination mode and spatial position of low-order strike-slip faults on the plane, and is ideal for determining low-level sequence faults in areas with low signal-to-noise ratio and low-frequency seismic data. It is an effective means to ensure the re-understanding of oil control laws of hidden faults in oil and gas fields with complex structures or fault-block oil and gas fields, increase reserves and production, and deploy and adjust development plans.

Description

technical field [0001] The invention belongs to the field of petroleum exploration, and in particular relates to a seismic identification method for low-order strike-slip faults in complex structural areas. Background technique [0002] Strike-slip faults in oil and gas basins not only have diverse formation mechanisms and are widely distributed, but also play a very important role in oil and gas enrichment; low-order strike-slip faults, as a subtle regulatory fault pattern, often cause stress distribution in a local area. Inhomogeneity, resulting in a series of small fractures and micro-cracks, greatly improving the permeability of the reservoir, and greatly increasing the productivity of low-porosity reservoirs, but limited to the quality of seismic data in complex structural areas and low-order strike-slip faults often appear as one This regulatory structure type has the characteristics of concealment and multi-directional development, so its effective identification has ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01V1/30G01V1/34
CPCG01V1/306G01V1/345G01V2210/6161G01V2210/624
Inventor 冯建伟梁锴任启强柳兴刚李树博
Owner CHINA UNIV OF PETROLEUM (EAST CHINA)
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