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The Revelation of Minor Reservoir Opportunity: Realizing Low Resistivity Contrast Reservoir Play Type in Baram Delta Basin East Malaysia, Thru REM Log Enhancement and Comprehensive Water Salinity Analysis

机译:轻微水库机会的启示:实现低电阻率造影油藏在马来西亚的Baram Delta盆地盆地播放型,THRU REM Log增强和综合水盐度分析

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Low Resistivity low contrast (LRLC) reservoirs were normally disregarded due to high water saturation and classified as tight sand. LRLC reservoir defined as Pay that has low resistivity contrast between sand and adjacent shale due to presence of conductive mineral or fresh water. Hence, this paper will transform the standpoint by demonstrating values and potential reserve addition underneath LRLC reservoir which proves that it could contribute equally as the conventional reservoir and realizing potential reserve growth. HY field located in Baram Delta Basin East Malaysia has been producing for more than 40 years and classified as lower coastal plain to coastal environment. The reservoir is loosely consolidated, fine to very fine sandstone and interbedded with shale. Z reservoir (Low Resistivity contrast reservoir) initially identified as gas-bearing reservoir with fresh water salinity of 2k-4kppm. Plus, difference in resistivity values between sand and adjacent shale only separated by ~3ohmm .Due to these claims, there is no Oil interpreted below the gas level and been neglected for years. A robust water salinity investigation supported with the geological point of view and water sample taken at the wellhead, Project Team proposed the water salinity should be 10k-15k ppm which is more saline than previously assumed. Revision in water salinity value has led to pinpoint Z reservoir as Oil bearing reservoir and recover estimated ~200 ft Pay of Oil column in Z reservoir. An appraisal well was drilled for data gathering and exploring potential in the deeper sections, hence serve as a platform for further petrophysical evaluation in the Z reservoir. As a result, Project team managed to take Oil sample and Oil gradient for Z reservoir. In addition, PVT lab result showed the oil sample taken having similar fluid property as the produced oil in the major reservoir. Based from the existing static model, potential additional of recoverable reserves was calculated around 20 MMstb for the Z reservoir. This has been an eye opener for the team to give an extra attention and emphasis on the true potential beneath the LRLC reservoir.
机译:由于水饱和度高,通常忽略低电阻率低对比度(LRLC)储存器,并将其分类为紧密砂。 LRLC储存器定义为由于存在导电矿物或淡水的存在而具有低电阻率对比的工资。因此,本文将通过在LRLC水库下面的值和潜在储备添加来改造观点,这证明它可以同样地贡献作为传统的储层和实现潜在的储备生长。 HY田地位于巴姆三角洲盆地东马来西亚一直生产40多年以上,并归类为沿海环境较低的沿海平原。水库松散地巩固,精细到非常细小的砂岩,并与页岩堵塞。 Z储层(低电阻率对比度储层)最初被识别为含有淡水盐水的燃气贮存器2K-4KPPM。此外,沙子和相邻页岩之间的电阻率值的差异仅为〜3ohmm。向这些权利要求分开,在气体水平下方没有解释的油并被忽视多年。强大的水资源盐度调查,支持在井口采集的地质观点和水样,项目团队提出水盐度应为10k-15k ppm,比以前假设的盐度更多。水盐度的修正导致Z储存器作为油轴承储存器,Z储层中估计〜200英尺的油柱。钻井井进行评估,以便在更深的部分中进行数据收集和探索潜力,因此作为进一步的Z储层进一步岩石物理评估的平台。因此,项目团队设法为Z水库采用油样和油梯度。此外,PVT实验室结果表明,作为主要储层中生产的油具有类似的流体性质的油样。从现有的静态模型中,Z储层计算左右20mmstB的潜在可收回储备。这是团队的一名醒目者,以额外关注并强调LRLC水库下面的真正潜力。

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