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INTEGRATED ANALYSIS OF THE-LOW RESISTIVITY HYDROCARBON RESERVOIR IN THE 'S' FIELD

机译:低电阻率碳氢化合物储层综合分析

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The "S" Field is mature oil field operated by "P" Asset V. The Reservoir in this field, multi-layered shaly-sands with depositional environment, is deltaic-shallow marine during the Middle to Late Miocene period. However, with the decrease in the oil price, drilling of development wells is hard to justify. Re-evaluation of logging data, especially the low resistivity zone, is seen as the best strategy to apply. The "S" Field contains more than 200 wells. Oil Base Mud was used starting from the middle of 2003 because clay has a sensitivity for swelling. The low resistivity study in this paper determines clay mineral and conductivity mineral through petrography analysis, X-Ray Diffraction (XRD), and Scanning Electron Microscope (SEM) on Side Well Coring sampling, and also determines drilling mud characteristics to identify low resistivity problems. Based on XRD and SEM analysis, the presence of clay minerals is dominated by kaolinite and some illite. Petrography analysis shows the presence of pyrite and siderite in small quantities. The main problem is caused by reservoir characteristics and the influence of drilling mud (lignosulfonate). These characteristics are explained in full in this paper.
机译:“S”田地是由“P”资产V.该领域的水库,具有沉积环境的多层Shaly - 砂岩,在中间至晚期中间至晚期浅水期。然而,随着石油价格的减少,发展井的钻井很难证明。重新评估测井数据,特别是低电阻区,被视为最佳施用策略。 “S”字段包含200多个井。从2003年代开始使用油基泥,因为粘土对肿胀的灵敏度。本文的低电阻率研究通过透过岩手分析,X射线衍射(XRD)和扫描电子显微镜(SEM)在侧面阱取样上确定粘土矿物和电导率矿物,并确定钻井泥浆特性以识别低电阻率问题。基于XRD和SEM分析,粘土矿物质的存在由高岭石和一些伊利特主导。岩画分析显示少量硫铁矿和含水极的存在。主要问题是由储层特征和钻井泥(木质素磺酸盐)的影响引起。本文完整解释了这些特性。

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