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Integrated Geological and Geophysical Approach to Reservoir Modeling: Case Study of Jambi Sub-basin, Sumatra, Indonesia

机译:综合地质和地球物理方法来储层建模 - 吉比盆地,苏门答腊,印度尼西亚案例研究

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摘要

Integrated geological and geophysical investigations were successfully performed for reservoir modeling in an oil field in the Jambi Province sub-basin, Sumatra, Indonesia. The objective of this study is to characterize the oil reservoir in terms of its petrophysical properties using a facies model that is based on an integrated geological and geophysical approach. The reservoir target of this study is located in the Air Benakat Formation, which is identified with a thickness of 3 to 20 m and is deposited in a depth range of 1300-1500 m. The reservoir modeling of Air Benakat Formation is carried out to open a new discovery for this field, since the comprehensive reservoir modeling has not been intensively performed. Structurally, the reservoir is segmented into three compartments by four main faults, and stratigraphic investigations revealed three prospect layers. In the present framework of the depositional environment, assessments of well log data included formation evaluations, well log data correlations and sequence stratigraphy, were performed to produce high-resolution features of vertical and lateral distributions. In addition, seismic data were interpreted to guide the structural model, and to effectively construct a three-dimensional (3D) geological framework of reservoir properties. The modeled reservoir shows that the reservoir is primarily considered a transition zone to a shallow marine deposit, which is specifically located in a submarine fan channel with a plain/moderately steep angle of its sedimentation base. Depositional environments are generally characterized by the potential paleocurrent direction within the channel axis from NE to SW, with respective agreement from larger scale porosity and net/gross models.
机译:在印度尼西亚苏门答腊省苏门答腊省苏门答腊省苏州盆地的油田中成功地对地质和地球物理调查成功进行了综合地质和地球物理调查。本研究的目的是利用基于集成地质和地球物理方法的面部模型来表征石油储存器。该研究的储层靶位于空气Benakat形成,其厚度为3至20μm,沉积在1300-1500μm的深度范围内。由于综合储层建模尚未密深,对该领域开辟了新发现的空气Benakat形成的储层建模。在结构上,将储存器通过四个主要断层分配成三个隔间,地层调查显示了三个前景层。在沉积环境的本框架中,进行了井日志数据的评估包括形成评估,井日志数据相关和序列地层,以产生垂直和横向分布的高分辨率特征。另外,解释地震数据以引导结构模型,并有效地构建储层性质的三维(3D)地质框架。模型储存器表明,储存器主要被认为是过渡区到浅海洋沉积物,该沉积物专门位于潜艇风扇通道中,其沉降底座的普通/中等陡峭的角度。沉积环境通常通过NE至SW的沟道轴内的电位古电流方向特征在于,具有较大尺度孔隙率和净/总模型的相应协议。

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