Joint analysis of seismic and well log data applied for prediction of oil presence in Maykop deposits in Naftalan area

IF 0.9 Q4 GEOSCIENCES, MULTIDISCIPLINARY AIMS Geosciences Pub Date : 2021-01-01 DOI:10.3934/geosci.2021020
M. Aghayeva
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Abstract

The paper is devoted to joint application of 3D seismic survey and well logging techniques to study oil and gas presence in Maykop deposits in Naftalan oil field. The field is located in Naftalan-Northern Naftalan area of Ganja oil and gas province, Azerbaijan. The paper brings data about Naftalan field, the ancient brachianticline type of field in Azerbaijan. The paper also considers the history of study of the field by use of geological and geophysical techniques. Despite the studies cover the area since 1873, the oil and gas presence in Maykop has not been studied sufficiently due to sparse network of wells and insufficient amount of core samples. To avoid this gap the results of previous studies have been revised. Joint interpretation of well logging data acquired from 22 wells and data of 3D seismic survey covering the area has been done. On the basis of oil-saturation cube, we have designed the map (the area between the top and the foot of I horizon of Maykop) and 3D model of target interval. It has been defined that uneven distribution of oil saturation and poor oil recovery depends also on sedimentation environment, characterized by rapid subsidence of the basin and increasing amount of clay in the process of sedimentation. Our studies revealed that the average value of oil saturation varies as 0.5–0.6 and increases towards the North-East of the study area. In the final stage of the study we have presented the oil saturation cube and the map drawn on the basis of this cube.
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地震与测井资料联合分析在Naftalan地区Maykop储层含油预测中的应用
研究了三维地震勘探与测井技术在Naftalan油田Maykop油藏油气赋存状态研究中的联合应用。该油田位于阿塞拜疆Ganja油气省的Naftalan- northern Naftalan地区。本文介绍了阿塞拜疆古臂背斜型纳夫塔兰油田的资料。本文还考虑了利用地质和地球物理技术研究该领域的历史。尽管自1873年以来,研究就覆盖了该地区,但由于油井网络稀疏,岩心样本数量不足,Maykop的油气存在尚未得到充分研究。为了避免这一差距,对以前的研究结果进行了修订。对该地区22口井的测井资料和三维地震调查资料进行了联合解释。在含油饱和度立方体的基础上,设计了Maykop 1层位上至下的区域图和目标层位的三维模型。确定含油饱和度分布不均匀、采收率差还与沉积环境有关,其特征是盆地快速沉降,沉积过程中粘土含量增加。研究表明,研究区含油饱和度平均值在0.5 ~ 0.6之间,向东北方向逐渐增大。在研究的最后阶段,我们提出了含油饱和度立方体,并在此立方体的基础上绘制了地图。
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来源期刊
AIMS Geosciences
AIMS Geosciences GEOSCIENCES, MULTIDISCIPLINARY-
自引率
7.70%
发文量
31
审稿时长
8 weeks
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