Observation system variable-layout design evaluation method and observation system variable-layout design evaluation device based on actual seismic data

An observation system and design evaluation technology, applied in the field of observation system variable observation design evaluation based on actual seismic data, can solve the problems of lack of seismic data, large errors, and inability to truly predict the size of the seismic section gap and imaging effect, and achieve good application Effects, Effects that Improve Collection Effects

Active Publication Date: 2015-05-06
BC P INC CHINA NAT PETROLEUM CORP +1
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Problems solved by technology

[0003] The above method is an evaluation method of the observation system based on the number of coverages. Since the number of coverages cannot truly represent the lack of seismic data, especially the missing length and width of shallow seismic data, it is impossible to truly predict the size of the seismic section ga

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  • Observation system variable-layout design evaluation method and observation system variable-layout design evaluation device based on actual seismic data
  • Observation system variable-layout design evaluation method and observation system variable-layout design evaluation device based on actual seismic data
  • Observation system variable-layout design evaluation method and observation system variable-layout design evaluation device based on actual seismic data

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Embodiment

[0060] This embodiment is an evaluation method for variable observation design of an observation system based on actual seismic data in petroleum geophysical exploration. Calculate the offset distribution of each bin in the variable observation system designed according to the distribution of obstacles in the exploration area, and select seismic gather data that can represent the characteristics of the target layer in the exploration area (common shot points, Common receiver points or common center point gathers), perform bad track removal, denoising and dynamic correction on the selected seismic gather data, and perform reasonable removal according to the waveform stretching and distortion to obtain model super gathers. Each bin of the observation system extracts the seismic trace closest to the offset from the model supergather according to the offset, and obtains the gather data of each bin, and superimposes the gather data of each bin Obtain a seismic trace as the output s...

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Abstract

The invention relates to an observation system variable-layout design evaluation method and an observation system variable-layout design evaluation device based on actual seismic data. The method comprises the following steps: the shot-geophone distance distribution of each surface element is calculated according to a variable-layout observation system of an obstacle in an exploration area; seismic channel set data representing the features of a target layer of the exploration area is selected from actual seismic data of the exploration area, the selected seismic channel set data forms a model super channel set, and the shot-geophone distance of the super channel set is distributed uniformly; a seismic channel with smallest offset distance is extracted from the model super channel set according to the shot-geophone distance for each surface element to obtain channel set data of the surface element; the channel set data of the surface elements is superimposed to obtain a seismic data body of the exploration area; and a seismic profile or horizontal slice is extracted from the seismic data body to analyze shallow seismic data loss and remedy, thus realizing observation system variable-layout design evaluation.

Description

technical field [0001] The invention relates to the technical field of petroleum geophysical prospecting data processing, in particular to a method and device for variable-observation design evaluation of an observation system based on actual seismic data. Background technique [0002] With the rapid development of my country's urbanization and national economy, large-scale buildings, factories and mines, farms, road networks, etc. are increasing year by year, coupled with naturally formed mountains, lakes, etc., in seismic exploration, these areas cannot be deployed shot points And the receiver point is the obstacle area of ​​seismic exploration. Due to these obstacle areas, the shot points and receiver points in seismic exploration cannot be arranged regularly according to the designed observation system, resulting in the lack of shallow layers in the final processed seismic data, which affects the overall understanding of structural blocks and resource evaluation of sags. ...

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Application Information

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IPC IPC(8): G01V1/30
Inventor 邹雪峰许银坡詹仕凡李培明杨剑韩淑敏
Owner BC P INC CHINA NAT PETROLEUM CORP
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