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An Integrated Approach on Carbonate Reservoir Evaluation by Combining Borehole Image and NMR Logs - A Case study in Ordovician Carbonate, East China (SPE-131580)

机译:钻孔图像与NMR日志结合碳酸盐岩储层评价的综合方法 - 以华东奥陶涅迪艺术家碳酸盐岩案例研究(SPE-131580)

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This paper is a case study in an Ordovician carbonate, east China. Most carbonates are buried hill of Ordovician age and the reservoirs are dolomitized. Fractures are very important here as the porosity is often very low (about 2-5%). But the puzzle is the higher fractured zones not always are the higher production zones. So the two important things that one should be concerned with are (i) how to find the fractured zones, and (ii) the factors influenced the production rates. An integrated approach using a combination of borehole image and NMR logs is applied in this study. Borehole image are used to extract fractures, vugs, rock textures and pore textures. Structure profile across the wellbore is created from the image dips as well, as an aid of the fracture analysis. NMR Bin data and T2 distribution spectrum are displayed to reflect pore textures, and a relative permeability also calculated from NMR logs. Furthermore, the morphic rock types are classified in details base on borehole images and lithology identified with other openhole logs. Nine morphic rock types are identified. All the summary data are displayed in one integrated plot for thorough analysis. The reservoir properties are found well related to morphic rock types and pay zones are observed located near the fault zone. Faults in one hand enhance the reservoir by dissolution on fracture and vugs near the fault zone, while in the other hand, it impair permeability of the fractures with clays in the fault zone. Clay filled conductive fractures can be seen in borehole image, but no any permeable indictors in NMR data. The vuggy fractured dolomite is deemed as pay zone. The results are validated by the later well production . Borehole image and NMR logs togehter provide a valuable solution for understanding of this reservoir.
机译:本文是华东省奥陶涅师碳酸盐的案例研究。大多数碳酸盐覆盖奥陶器年龄的山丘,水库是多元化的。随着孔隙率通常非常低(约2-5%),骨折非常重要。但拼图是较高的骨折区域,并不总是是更高的生产区。因此,这两个重要的事情应该涉及(i)如何找到骨折区域,并(ii)因素影响了生产率。本研究应用了使用钻孔图像和NMR日志组合的综合方法。钻孔图像用于提取骨折,Vugs,岩石纹理和孔纹理。井筒的结构轮廓也是根据裂缝分析的辅助图像倾斜创建的。显示NMR BIN数据和T2分布频谱以反映孔纹理,并且来自NMR日志也计算的相对渗透率。此外,变形岩体在钻孔图像的细节中分类,与其他透露孔原木识别的岩石图像和岩性。鉴定了九种形貌岩石类型。所有摘要数据都显示在一个集成图中以进行全面分析。发现储层属性与变形岩石类型良好,观察到在断层区域附近观察到支付区域。一方面的缺陷通过溶解在断层区附近的骨折和Vugs上的岩体增强了储库,而另一方面,它在断层区中的粘土损伤了骨折的渗透性。在钻孔图像中可以看到粘土填充导电骨折,但在NMR数据中没有任何可渗透的标识。 Vuggy骨折的白云石被视为薪水区。结果由后期生产效果验证。钻孔图像和NMR日志Togehter为理解该水库提供了一个有价值的解决方案。

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