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Azimuthal anisotropy analysis of wide-azimuth P-wave seismic data for fracture orientation and density characterization in a tight gas reservoir

机译:宽四倍波波地震数据的方位调各向异性分析,用于骨折骨质储层中断裂型和密度表征

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The role of anisotropy in fracture detection has dramatically increased with the advent of wide-azimuth (WAZ) and high-density seismic acquisition. Fracture prediction using horizontal transverse isotropy (HTI) anisotropic theory is a useful tool for identifying reservoir characteristics. We have developed an approach for fracture density and orientation estimation based on the combination of a velocity variation with azimuth (VVAZ) and an amplitude variation with azimuth (AVAZ) analysis workflow. First, we sort the prestack WAZ data into offset vector tile (OVT) sectors and perform VVAZ inversion by elliptical velocity fitting of measured azimuth-differential traveltimes. In this step, we can predict the fast P-wave velocity, slow P-wave velocity, and fracture orientation. Second, we apply AVAZ inversion to extract more accurate predictions of the anisotropic gradient and fracture orientation. We implement the method with 3D prestack WAZ seismic data acquired in the Sichuan Basin, from the southwest part of China. The field data example indicates that the inversion results agree with geologic information and well-log imaging data, which confirm the effectiveness of this technology.
机译:各向异性在裂缝检测中的作用随着宽方位角(WAZ)和高密度地震采集的出现而显着增加。使用水平横向各向同性(HTI)各向异性理论的裂缝预测是一种识别储层特征的有用工具。我们已经开发了一种基于速度变化与方位角(VVAZ)的速度变化和具有方位角(AVAZ)分析工作流程的幅度变化的裂缝密度和取向估计的方法。首先,我们将Prestack WAZ数据分类为偏移向量瓦(OVT)扇区,并通过测量的方位差行为频率的椭圆速度拟合执行VVAZ反转。在该步骤中,我们可以预测快速的P波速度,慢的P波速度和断裂方向。其次,我们应用Avaz反转以提取更准确的各向异性梯度和断裂取向的预测。我们从中国西南部地区获得了在四川盆地获得的3D Prestack Waz地震数据的方法。现场数据示例表示反演结果与地质信息和良好的成像数据一致,这证实了该技术的有效性。

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    《Interpretation》 |2020年第1期|共11页
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  • 正文语种 eng
  • 中图分类 地球物理学;
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