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川东地区嘉二~2储层地震预测技术

SEISMIC PREDICTION TECHNIQUES OF T1j22 RESERVOIR IN EAST SICHUAN

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【作者】 李羽康昆廖松柏毕长春

【Author】 Li Yu1, Kang Kun2, Liao Songbai1 and Bi Changchun1 (Chongqing Gas Field, Southwest Oil and Gas Field Branch, PCL; and 2.Chengdu Geophysical Research Center, Geophysical Exploration Company, SPA).

【机构】 西南油气田分公司重庆气矿四川石油管理局地球物理勘探公司物探研究中心西南油气田分公司重庆气矿

【摘要】 川东地区嘉二2亚段为低孔、低渗、非均质性十分强烈的裂缝—孔隙型储集层,具有层多、层薄、纵横向变化大的特点,其测井响应特征为高中子、高声波、低伽马、低密度,在时间剖面上异常特征不明显,特殊处理剖面上的响应特征一般为低速、高吸收、低密度、低伽马值、小断层发育的含气模式。文章利用现有的地质、钻井、测井及地震资料,进行了多种特殊处理方法试验及解释,建立嘉二2亚段地震响应模式,总结了一套行之有效的嘉二2亚段地震预测方法。依据各区块的岩性差异,对膏质含量较重的区块用速度反演、密度反演及瞬时相位剖面联合解释储层;对泥质含量较重的区块用速度反演、伽马反演及瞬时相位技术共同预测储层,寻找有利区。

【Abstract】 The T1j22 (second submember of the second member of Jialingjiang Formation, Lower Triassic) reservoir in East Sichuan is a fractured-porous reservoir with the characteristics of low porosity, low permeability, strong heterogeneity, multiple-layer, thin-layer and great vertical and horizontal thick change, etc. Its log response was characterized by high neutron log, high acoustic log, low gamma-ray log and low density log; its abnormal features were unnoticeable on seismic time section; and it seismic response characteristics on the special-purpose processing sections expressed as a gas-bearing mode of low velocity, high absorption, low density, low gamma-ray and little-fault development. By use of the existent geologic, drilling, log and seismic data and through testing and interpreting many kinds of special-purpose processing methods, the seismic response mode of T1j22 reservoir was set up and a set of effective seismic prediction techniques of T1j22 reservoir were summarized by the authors. According to various lithologic characters in different areas, it was suggested that the beneficial T1j22 reservoirs at high gyps content areas may be comprehensively interpreted by use of the velocity inversion, density inversion and instantaneous phase techniques and those at high shale content areas by use of the velocity inversion, gamma-ray inversion and instantaneous phase techniques.

  • 【文献出处】 天然气工业 ,Natural Gas Industry , 编辑部邮箱 ,2005年06期
  • 【分类号】P631.4
  • 【被引频次】3
  • 【下载频次】146
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