滨海砂岩储层间层定量识别及其石油地质意义——以塔里木盆地哈德油田东河砂岩为例

IF 3.6
Rui Yuan , Chenlong Lu , An Zhao , Wei Wang , Zhiwei Wu , Zijin Yan , Qi Sun
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引用次数: 0

摘要

埋藏的海岸砂岩可能是优质的油气储集层。受沉积和成岩作用的控制,含泥质和钙质的滨海砂岩孔隙度和渗透率低,层厚小。这些不透水的夹层在流动单元之间起到了挡板和屏障的作用,对油气开发至关重要。塔里木盆地哈德油田东河砂岩属高产海相碎屑岩储层。经过近30年的开发,剩余油气资源的分布受到泥质、钙质和砂质夹层的影响。以东河砂岩为例,提出了一种滨海砂岩储层间层定量识别方法。基于26口井的岩心,采用极限梯度增强(XGBoost)技术提取了不同夹层的自然伽马(GR)、密度(DEN)、补偿中子(CNL)、声波(AC)等敏感常规测井曲线。利用多矿物模型(MMM)计算了上述敏感测井曲线的泥质、砂质和钙质含量的连续曲线。根据泥质、钙质、砂质夹层的含量,建立了一套定量标准体系。所有直井的夹层类型都得到了识别。夹层在每个床具的顶部表现出横向连续性。目前斜坡区夹层较沿海区更为发育。泥质和砂质夹层在相对海平面高处较为发育,钙质夹层在相对海平面低处较为发育。BS6顶部扩展的夹层导致东河砂岩有两个不同的油水界面。提出的层间定量识别方法为哈德油田东河砂岩含油气系统的开发潜力提供了有价值的认识。该方法灵活易行,可应用于其他海相砂岩储层或类似地层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Quantitative recognition and petroleum geological significance of interlayers in coastal sandstone reservoirs: A case study from the Donghe Sandstone in the Hade Oilfield, Tarim Basin, NW China

Quantitative recognition and petroleum geological significance of interlayers in coastal sandstone reservoirs: A case study from the Donghe Sandstone in the Hade Oilfield, Tarim Basin, NW China
Buried coastal sandstones would be of high-quality hydrocarbon reservoirs. Controlled by deposition and diagenesis, coastal sandstones mixed with muddy and calcareous materials are usually low in porosity and permeability and small in layer thickness. These impermeable interlayers act as baffles and barriers between flow units and are crucial in hydrocarbon development. Donghe Sandstone in the Hade Oilfield of Tarim Basin, NW China, belongs to coastal clastic reservoirs of high oil productivity. Following nearly 30 years of development, the distribution of remaining hydrocarbon resources is affected by the muddy, calcareous, and marlaceous interlayers. Taking the Donghe Sandstone as an example, a quantitative recognition method of interlayers in coastal sandstone reservoirs is proposed in this paper. Based on cores from 26 wells, the sensitive conventional log curves of different interlayers, namely the natural gamma-ray (GR), density (DEN), compensated neutron (CNL), and acoustic (AC), are extracted by the Extreme Gradient Boosting (XGBoost). Multi-mineral model (MMM) is used to calculate continuous curves for muddy, sandy, and calcareous contents by the mentioned sensitive logs. A set of quantitative standard system is established for identifying muddy, calcareous, and marlaceous interlayers based on their respective contents. The types of interlayers are identified across all vertical wells. The interlayers exhibit lateral continuity at the top of each bed-set. Interlayers are currently more developed in the slope region than in the coastal region. Muddy and marlaceous interlayers are more developed at high relative sea-level, while calcareous interlayers are more developed at low relative sea-level. The extended interlayers at the top of BS6 lead to two different oil-water contacts in the Donghe Sandstone. The proposed quantitative recognition method for interlayers provides valuable insights into the exploitation potential of petroleum systems in the Donghe Sandstone of the Hade Oilfield. The flexible and easy-to-use method can be applied to other marine sandstone reservoirs or similar formations.
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