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深层复杂地质构造带地震勘探关键技术——以四川盆地龙门山断褶带北段为例

赵路子 张光荣 陈伟 彭勇 谢冰 彭忻 周祺 曾乙洋

天然气工业2018,Vol.38Issue(1):39-48,10.
天然气工业2018,Vol.38Issue(1):39-48,10.DOI:10.3787/j.issn.1000-0976.2018.01.005

深层复杂地质构造带地震勘探关键技术——以四川盆地龙门山断褶带北段为例

Key seismic survey technologies for deep complex geological structures: A case study of the northern section of the Longmenshan Fault Fold Belt in the Sichuan Basin

赵路子 1张光荣 1陈伟 1彭勇 1谢冰 1彭忻 2周祺 2曾乙洋1

作者信息

  • 1. 中国石油西南油气田公司
  • 2. 中国石油集团东方地球物理勘探有限责任公司
  • 折叠

摘要

Abstract

The northern Sichuan Basin,spreading in the northern section of the Longmenshan Fault Fold Belt,is characterized by dramatic fluctuations in surface landforms,development of abdominal faults,and low-quality seismic data,resulting in difficulties in clarifying relevant structures.The key target formation,the Mid-Permian Qixia Fm,is deeply buried with thin reservoirs and high heterogeneity,which brings great challenges to seismic prediction.Under such circumstances,researches have been conducted jointly in terms of seismic data acquisition,processing and interpretation,and finally some relevant seismic survey technologies were developed suitable for surface/underground complex structures.Through surface structural surveys,dynamic deep-well lithologic identification,single-point detector deployment and process optimization,acquisition parameters can be excited.In addition,by using an observation system with high coverage,wide azimuth and huge displacement,quality of acquired seismic data can be enhanced dramatically.Seismic imaging technologies for complex structures have been developed to enhance the quality of images for deep formations.These technologies are dominated by microscopic logging-constrained tomography static correction,high-resolution processing with fidelity and amplitude preservation and all-around PSDM in an angular domain.By using high-resolution gravity,magnetic and electric data,details related to geological structures and faults can be identified.In combination with fine seismic data interpretation,structural details and fault features can be verified effectively.Based on forward modeling and fine seismic calibration of reservoirs in individual wells,suitable attributes can be identified for predictions related to the distribution of reservoirs.By using all these auxiliary technologies,a large-scale structural-lithologic composite trap with a total area of 1 223 km2 has been discovered in the northwestern Sichuan Basin.The Shuangyushi-Jiangyou area as a whole distributes on structural highs.In the areas to the south of Shuangyushi,the Qixia Fm dolomite reservoirs of platform margins are continuously developed.In conclusion,these auxiliary technologies can effectively allow trap identification and thin reservoir prediction in complex structures in the study area.In addition to clarifying the exploration orientation and providing a necessarily technical supports for well deployment,these technologies help to accelerate the construction of demonstration projects for the exploration and development of deep marine carbonate formations.

关键词

四川盆地/龙门山断褶带/中二叠世/地面地下双复杂构造/薄储集层/三维地震采集/地震成像/储层预测

Key words

Sichuan Basin/Longmenshan Fault Fold Belt/Mid-Permian/Surface/underground complex structure/Thin reservoir formation/3D seismic data acquisition/Seismic imaging/Reservoir prediction

引用本文复制引用

赵路子,张光荣,陈伟,彭勇,谢冰,彭忻,周祺,曾乙洋..深层复杂地质构造带地震勘探关键技术——以四川盆地龙门山断褶带北段为例[J].天然气工业,2018,38(1):39-48,10.

基金项目

国家科技重大专项“大型油气田及煤层气开发”(编号:2016ZX05004-005、2016ZX05007-004)、中国石油天然气集团公司重大科技专项“西南油气田天然气上产300亿立方米关键技术研究与应用”(编号:2016E-06、2016E-0602、2016E-0603、2016E-0604). (编号:2016ZX05004-005、2016ZX05007-004)

天然气工业

OA北大核心CSCDCSTPCD

1000-0976

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