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TECTONIC FRACTURES ANALYSIS OF CARBONATE BATURAJA FORMATION, PONDOK TENGAH FIELD USING COHERENCE ATTRIBUTES

机译:利用相干属性分析庞多克滕加田碳酸盐岩布拉图亚组的构造断裂

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For a couple of decades, fractured reservoirs were detected by processing pre-stack seismic data for velocity and amplitude variation with azimuth or by analyzing multi-component P- and S-wave data. An alternative method for fracture reservoir detection using post-stack 3D seismic is coherence attributes. Seismic coherency is a measure of lateral changes in the seismic response caused by variation in structure, stratigraphy, lithology, and porosity. Map views of the Coherence Cube seismic data afford the opportunity to interpret stratigraphic features, such as channels; fault and fracture more clearly than conventional seismic data. In this study, we also used the FMI analyses of vertical wells to verify fracture orientation.In this study, tectonic fracture zones are associated with fault trends and areas of deformation such as structural corners and fault intersections (Fault-related). From the coherence cube, we can see several discontinuity features that fit with fault zone characters and fracture distribution. The coherence attribute helps us to identify and enhance the complex faults which are responsible for the generation of natural fractures. By using this interpretation model, a better understanding of the fracture system of the Pondok Tengah Field was obtained.
机译:几十年来,通过处理叠前地震数据的方位角速度和振幅变化或分析多分量P波和S波数据,发现了裂缝性储层。使用叠后3D地震检测裂缝储层的另一种方法是相干属性。地震相干性是对结构,地层,岩性和孔隙度变化引起的地震响应横向变化的一种度量。相干立方地震数据的地图视图为解释地层特征(例如通道)提供了机会。断层和裂缝比常规地震数据更清晰。在这项研究中,我们还使用了垂直井的FMI分析来验证裂缝方向。 在这项研究中,构造断裂带与断层趋势和变形区域(例如结构拐角和断层相交处(与断层有关))相关。从相干立方体中,我们可以看到一些与断层带特征和裂缝分布相适应的不连续特征。相干属性有助于我们识别和增强导致天然裂缝生成的复杂断层。通过使用该解释模型,可以更好地了解Pondok Tengah油田的裂缝系统。

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