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四川盆地中南部寒武系筇竹寺组超深层页岩气地震关键技术及发展方向

熊亮 吕其彪 闫亮 许川东 涂远艮 林娜

天然气工业2026,Vol.46Issue(7):48-59,12.
天然气工业2026,Vol.46Issue(7):48-59,12.DOI:10.3787/j.issn.1000-0976.2026.07.005

四川盆地中南部寒武系筇竹寺组超深层页岩气地震关键技术及发展方向

Key seismic technologies for ultra-deep shale gas in the Cambrian Qiongzhusi Formation of central-southern Sichuan Basin and their development directions

熊亮 1吕其彪 1闫亮 2许川东 3涂远艮 2林娜2

作者信息

  • 1. 中国石化西南油气分公司
  • 2. 中国石化西南油气分公司勘探开发研究院
  • 3. 中国石化石油物探技术研究院
  • 折叠

摘要

Abstract

The Cambrian Qiongzhusi Formation in the Sichuan Basin has immense potential for shale gas exploration,but due to its great depth and considerable thickness,intralayer seismic reflection signals are weak with low resolution.As a result,internal geological cycles are ambiguous,the continuity of layer interfaces is poor,fault points and surfaces are not clearly defined,and micro-amplitude structures are not determined,which hampers fine exploration and development.Based on the existing seismic data,this paper carries out targeted research on seismic data processing and sweet spot prediction.In addition,the effectiveness of the technology is verified through practical engineering.The following results are obtained.First,the high-fidelity denoising technology based on weak signal protection,the multiple identification and suppression technology,the Q-tomography and Q-migration resolution enhancement technology,and the reverse-time migration imaging technology are developed,and their application increases the dominant frequency of the target layer by 5 Hz and widens the frequency bandwidth by 10 Hz,improving the capacity of layer identification.Second,the shale sweet spot prediction technology driven by petrophysical model,the brittle mineral content prediction technology for shale,the three-dimensional geostress prediction technology,and the neural network based fracture probability detection technology are established,and their application delivers a geological sweet spot prediction accuracy exceeding 90%and an engineering sweet spot prediction accuracy exceeding 80%.Third,structural fractures are characterized more precisely,enabling the gas content,enrichment,and fracability evaluation of shale intervals,and confirming the distribution of geological-engineering sweet spots.Fourth,the seismic research achievements support the efficient exploration and large-scale reserves submission of the Qiongzhusi Formation ultra-deep shale gas in the Weiyuan-Ziyang area,the formulation of pilot three-dimensional development plans,and the construction of 1×109 m3/a production capacity in the lower submember of the second member of the Qiongzhusi Formation,ensuring a 100%drilling rate of high-quality reservoirs and an average daily tested production exceeding 1×106 m3.Fifth,To meet the demands for ultra deep and multi-layered systems,multi type exploration and evaluation,and three-dimensional development in the Qiongzhusi Formation,technology iteration and upgrading direction centered on high-density seismic technology has been proposed.In conclusion,the research findings can effectively address the challenges to the exploration and development of the Qiongzhusi Formation shale gas,ensure the large-scale and efficient development of ultra-deep thick shale gas reservoirs,and are of reference significance for the exploration and development of similar shale gas in other areas.

关键词

四川盆地/资阳地区/筇竹寺组/超深层页岩气/超深层地震资料处理/地震甜点预测/地质工程一体化

Key words

Sichuan Basin/Ziyang area/Qiongzhusi Fm/Ultra-deep shale gas/Ultra-deep seismic data processing/Seismic sweet spot prediction/Geology-engineering integration

分类

天文与地球科学

引用本文复制引用

熊亮,吕其彪,闫亮,许川东,涂远艮,林娜..四川盆地中南部寒武系筇竹寺组超深层页岩气地震关键技术及发展方向[J].天然气工业,2026,46(7):48-59,12.

基金项目

中国石化重大科技项目"资阳、井研寒武系筇竹寺组页岩气高效勘探关键技术研究与示范"(编号:025005). (编号:025005)

天然气工业

1000-0976

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