南苏门答腊-参比-亚盆地Betung油田岩石物理计算分析及边界确定

Irmaya Ai
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摘要

岩石物理性质为储层表征提供了一种全面的方法,其中储层质量最为重要。控制储层质量的主要因素是孔隙度、渗透率和粘土含量。岩石物理模型是通过利用工具响应(测井)与岩石和流体性质之间的相关性来使用的。这些岩石物理结果将被切断,以区分储层的生产和非生产部分。应用Betung油田的岩石物理和截止计算来确定Air Benakat组储层的质量和生产层。根据岩石物理和截止计算结果得出的储层和生产层的质量决定油田开发方向(注水井)。本研究在Betung油田第5层(L-5)进行,主要使用测井数据(伽马射线、密度、中子、电阻率)。利用Interactive petrophysics和Microsoft Excel软件对测井曲线进行处理,获得岩石物理值。然后将岩石物理结果与粘土含量、孔隙度和含水饱和度进行对比,从而从Betung L-5油田获得了一个产层。岩石物性和切断结果表明,L-5为油气远景区,210井的平均岩石物性值(Vclay: 32%,孔隙度:25%,含水饱和度:65%);220井(粘土:35%,孔隙度:30%,含水饱和度:38%);222井(Vclay: 8.2%,孔隙度:31%,含水饱和度:28%)。210井的临界值(Vclay: 42.6%,孔隙度:17%,含水饱和度:98%);220井(Vclay: 26.6%,孔隙度:22.4%,含水饱和度:50.3%);222井(Vclay: 18%,孔隙度:17%,含水饱和度:70.4%)
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Petrophysical Calculation Analysis and Determination of Cut-Off in Betung Field, Jambi-Sub-Basin, South-Sumatera-Basin
Petrophysical properties provide a comprehensive approach to reservoir characterization, in which reservoir quality is of paramount importance. The main controllers for reservoir quality are porosity, permeability and clay content. Petrophysical models are used by utilizing the correlation between tool response (logging) and rock and fluid properties. These petrophysical results will be cut-off to distinguish productive and unproductive parts of a reservoir. Petrophysical and cut-off calculations in the Betung Field are applied to determine the quality and productive zone of the Air Benakat Formation reservoir. The direction of field development (infill wells) is based on the quality of the reservoir and productive zone obtained based on the results of petrophysical and cut-off calculations. This research was conducted in Layer 5 (L-5) of the Betung Field using the main data, namely well logs (Gamma ray, density, neutron, resistivity). Well logs were processed to obtain petrophysical values using Interactive Petrophysic and Microsoft Excel software. Petrophysical results were then cut-off on clay content, porosity and water saturation, so that a productive zone was obtained from the Betung L-5 field. Petrophysical and cut-off results show L-5 is a Hydrocarbon prospect zone with an average petrophysic value for well 210 (Vclay: 32%, porosity: 25% and water saturation: 65%); well 220 (Vclay: 35%, porosity: 30% and water saturation: 38%); well 222 (Vclay: 8.2%, porosity: 31% and water saturation: 28%). The resulting cut-off values for well 210 (Vclay: 42.6%, porosity: 17% and water saturation: 98%); well 220 (Vclay: 26.6%, porosity: 22.4% and water saturation: 50.3%); well 222 (Vclay: 18%, porosity: 17% and water saturation: 70.4%).
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