新疆石油地质 ›› 2020, Vol. 41 ›› Issue (2): 164-171.doi: 10.7657/XJPG20200205

• 油气勘探 • 上一篇    下一篇

川东大猫坪地区长兴组生物礁储集层预测

丁传奇1a, 周路1a, 钟克修2, 吴勇1a,1b, 钟斐艳1a,1c, 刘怡3   

  1. 1. 西南石油大学 a.地球科学与技术学院;b.天然气地质四川省重点实验室;c.电气信息学院,成都 610500
    2. 中国石油 西南油气田分公司 重庆气矿,重庆 400042
    3. 四川省地质工程勘察院集团有限公司,成都 610832
  • 收稿日期:2019-11-01 修回日期:2020-01-02 出版日期:2020-04-01 发布日期:2020-04-07
  • 作者简介:丁传奇(1995-),男,黑龙江鸡西人,硕士研究生,地震资料解释,(Tel)18428372496(E-mail)1405883648@qq.com
  • 基金资助:
    国家自然科学基金(41430316);国家科技重大专项(2017ZX05008-004-008)

Prediction of Reef Reservoir in Changxing Formation of Damaoping Area, Eastern Sichuan Basin

DING Chuanqi1a, ZHOU Lu1a, ZHONG Kexiu2, WU Yong1a,1b, ZHONG Feiyan1a,1c, LIU Yi3   

  1. 1. Southwest Petroleum Universiy, a.School of Geosciences and Technology; b.Sichuan Key Laboratory of Natural Gas Geology; c.School of Electrical Engineering and Information, Chengdu, Sichuan 610500, China
    2. Chongqing Gas Field, Southwest Oil and Gasfield Company, PetroChina, Chongqing 400042, China
    3. Sichuan Institute of Geological Engineering Investigation Group Co., Ltd, Chengdu, Sichuan 610032, China
  • Received:2019-11-01 Revised:2020-01-02 Online:2020-04-01 Published:2020-04-07

摘要:

四川盆地东部大猫坪地区上二叠统长兴组生物礁呈环带状分布,单个生物礁规模小且埋藏深,纵向上多期次叠置,其储集层非均质性强,预测难度较大。针对生物礁储集层内部地震波同相轴振幅偏弱、反射空白和杂乱的特点,在井震标定和正演模型建立生物礁地震响应特征基础之上,通过聚类分析对礁体敏感的多种地震属性融合波形,预测生物礁分布,以过生物礁的等时地震振幅切片为约束,利用基于S变换的频谱分解振幅切片识别生物礁边界。分频与波形聚类组合方法识别的生物礁边界更为准确,得到的生物礁内部特征更加精细,与研究区钻井结果符合程度高。

关键词: 四川盆地, 大猫坪地区, 二叠系, 长兴组, 波形聚类, 频谱分解, 生物礁, 储集层预测

Abstract:

The reefs of the Upper Permian Changxing formation in the Damaoping area of the eastern Sichuan basin are distributed in the shape of ring and strip. Individual reefs are characterized by small scale, deep burial depth, multiple periods of vertical superimposition and strong heterogeneity, leading to difficulties in reef prediction. Regarding the characteristics of weak amplitude of in-phase axis, blank and disordered reflections within the reef reservoir, and based on the logging-seismic calibration and forward models to establish seismic response characteristics of the reef, clustering analysis is performed to fuse multiple seismic attributes which are sensitive to reef, and the reef distribution is predicted. Constrained by isochronal seismic amplitude slice through reefs, S-transformation-based spectrum decomposition amplitude slices are used to identify reef boundary. The combined method of fractional frequency and waveform clustering can get more accurate reef boundary and more detailed characteristics of the reef, which are highly consistent with the actual drilling results in the study area.

Key words: Sichuan basin, Damaoping area, Permian, Changxing formation, waveform clustering, spectral decomposition, reef, reservoir prediction

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