首页> 外文学位 >Acoustic impedance inversion and AVO analysis on the Pliocene shallow gas sands, Rio Bravo field, San Joaquin Basin, California.
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Acoustic impedance inversion and AVO analysis on the Pliocene shallow gas sands, Rio Bravo field, San Joaquin Basin, California.

机译:加利福尼亚圣华金盆地里约布拉沃油田上新世浅层气砂的声阻抗反演和AVO分析。

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摘要

Amplitude-versus-offset (AVO) attribute analysis, AVO elastic impedance (EI) inversion, and various acoustic impedance (AI) inversion techniques were applied on the 3-D land seismic data from the Rio Bravo oil and gas field located in the San Joaquin Basin, California. The main objective of this seismic amplitude analysis and interpretation is to detect the presence of gas accumulations in the shale-sand sequences of the Pliocene Etchegoin Formation, through the direct determination of lithology and pore-fluid content from seismic data. The low impedance "I" gas sands encased in shale or other high compressional-wave velocity clastic rocks were easily recognized and tracked laterally through the use of different AI inversion sections. The low AI anomalies roughly correlate with the known gas entry zones as shown in gas producing wells 61X-34 and 41X-34. It is also possible to evaluate the other parts of the field by using the AI color amplitude characteristics of gas producing wells as examples.;The AVO response at the interface between the top of the "I" gas sand and the overlying shale was found to behave as a Class IV AVO anomaly. The AVO anomaly is characterized by relatively large negative reflection coefficients that decrease in magnitude or amplitude with increasing angle of incidence. In terms of the basic attributes, Class IV anomaly is characterized by large negative intercept (A) at zero-incidence angle and positive gradient (B) with increasing angle of incidence. The AVO response of brine sands follow the same characteristics but of smaller magnitude than the gas sands. In well Kernco 11-34, the presence of gas was detected at a depth interval between 5395 ft and 5430 ft by crossplotting the near (0°-15°) - and far (15°-30°)-angle range stacks. The same gas anomaly was detected by the elastic impedance inversion of near-angle stack. The results obtained from the elastic impedance inversion of prestack seismic gathers showed that this approach can be used as a good indicator of lithology and pore-fluid and could be applied to interpret seismic data in addition to the traditional poststack seismic inversion. In summary, all the seismic interpretation techniques that were applied could be used as a routine geophysical tool to evaluate the presence of gas accumulations in these shallow, porous, gas sands to reduce drilling risk.
机译:将幅值与偏移量(AVO)属性分析,AVO弹性阻抗(EI)反演以及各种声阻抗(AI)反演技术应用于位于San San Francisco的Rio Bravo油气田的3-D陆地地震数据加利福尼亚华金盆地。地震振幅分析和解释的主要目的是通过直接从地震数据中确定岩性和孔隙流体含量,以检测上新世埃切戈因组页岩-砂岩层中的气藏。装在页岩或其他高压缩波速碎屑岩中的低阻抗“ I”气砂很容易识别,并通过使用不同的AI反演剖面进行横向追踪。低AI异常与产气井61X-34和41X-34中所示的已知气体进入区域大致相关。也可以通过使用产气井的AI颜色幅度特征为例来评估油田的其他部分。;发现“ I”型气砂顶部与上覆页岩之间的界面处的AVO响应表现为IV类AVO异常。 AVO异常的特征在于相对较大的负反射系数,该系数的大小或幅度随入射角的增加而减小。就基本属性而言,IV类异常的特征是零入射角处的大负截距(A)和随入射角增加的正梯度(B)。盐水砂的AVO响应具有相同的特征,但幅度小于气砂。在Kernco 11-34井中,通过交叉绘图近角(0°-15°)和远角(15°-30°)烟囱,在5395 ft和5430 ft之间的深度间隔处检测到气体的存在。通过近角堆的弹性阻抗反演检测到相同的气体异常。叠前地震道的弹性阻抗反演结果表明,该方法可以作为岩性和孔隙流体的良好指标,除传统叠后地震反演外,还可用于解释地震数据。总之,所应用的所有地震解释技术都可以用作常规地球物理工具,以评估这些浅层多孔气砂中的气藏存在,以降低钻井风险。

著录项

  • 作者

    Espanola, Onofre S.;

  • 作者单位

    Southern Methodist University.;

  • 授予单位 Southern Methodist University.;
  • 学科 Geophysics.
  • 学位 M.S.
  • 年度 2007
  • 页码 119 p.
  • 总页数 119
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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