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Genesis Analysis of High-Gamma Ray Sandstone Reservoir and Its Log Evaluation Techniques: A Case Study from the Junggar Basin, Northwest China

机译:高伽马射线砂岩储层的成因分析及其对数值评价技术 - 以西北朱根盆地的一个案例研究

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In the Junggar basin, northwest China, many high gamma-ray (GR) sandstone reservoirs are found and routinely interpreted as mudstone non-reservoirs, with negative implications for the exploration and exploitation of oil and gas. Then, the high GR sandstone reservoirs’ recognition principles, genesis, and log evaluation techniques are systematically studied. Studies show that the sandstone reservoirs with apparent shale content greater than 50% and GR value higher than 110API can be regarded as high GR sandstone reservoir. The high GR sandstone reservoir is mainly and directly caused by abnormally high uranium enrichment, but not the tuff, feldspar or clay mineral. Affected by formation’s high water sensitivity and poor borehole quality, the conventional logs can not recognize reservoir and evaluate the physical property of reservoirs. Then, the nuclear magnetic resonance (NMR) logs is proposed and proved to be useful in reservoir recognition and physical property evaluation.
机译:在中国西北三角盆地,许多高伽马射线(GR)砂岩水库被发现并常规地解释为泥岩非水库,对石油和天然气的勘探和开发具有负面影响。然后,系统地研究了高GR砂岩储层的识别原理,创世纪和日志评估技术。研究表明,具有明显页岩含量的砂岩储层大于50%,GR值高于110API可以被视为高GR砂岩储层。高GR砂岩储层主要是由异常高的铀浓缩造成的直接引起的,但不是凝灰岩,长石或粘土矿物。受到形成的高水位敏感度和井孔质量不佳,传统日志无法识别水库并评估水库的物理性质。然后,提出了核磁共振(NMR)日志,并证明可用于储层识别和物理性质评估。

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