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Unique Real and Relevant Time Formation Evaluation: A Case Study from the Gulf of Mexico with Innovative Advances in Logging While Drilling

机译:独特的真实和相关的时间形成评估:墨西哥湾与钻井伐木创新进展的案例研究

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This case study presents a success story of a development well in the Gulf of Mexicodrilled with oilbased mud,with latest high-definition borehole image and comprehensive formation evaluation-whiledrilling suite.Historical data from multiple offset wells suggested that the standardresolution petrophysical logs were insufficient to accurately evaluate this low-resistivity,low-contrastreservoir.The presence of salt intrusions compromises the surface seismic interpretation and poseadditional geological challenges,adding uncertainty to the oil water contact-which,if incorrectlyidentified,would cause early water production and compromise the success of the well.Deploying a unique,high-resolution dual-physics imaging-while-drilling system and the advanced petrophysical LWD logging suite for the first time in this field was critical toachieving the optimal reservoir characterization and making subsequent operational decisions.Real-timecapture-spectroscopy and sigma measurements were essential to evaluate the mineralogical compositionand saturation estimation.Water saturation computed from sigma gives an estimate of free-and bound fluid volume,independent of the resistivity measurement,which showed little contrast betweenhydrocarbon-and water-filled formations.The real-time transmission of apparent resistivity images enabled the identification and interpretation of the low-resistivity low-contrast reservoir,which appeared to be comprised of cross-bedded,sand-silt laminated facies.High-definition borehole images detected features such as fine lamination and fractures,which were not possible to be identified with the standard-resolution logging suite previously deployed in this field.This information provided an insight into the reservoir architecture and possible extent of the depositional facies vertically and laterally.The ultrasonic high-and low-frequency borehole images further helped refine the understanding of reservoir architecture in relevant time to aid in completion design.Additionally,the apparent resistivity derived from the high-definition resistivity provided a proxy to ultrashallow resistivity that was able to identify the movable fluid in the reservoir when compared to standard resistivity measurements in singular drilling pass and confirmed the oil-water contact which were a critical information for well completion design This case study demonstrates the integration of petrophysics and geological interpretation of comprehensive LWD logging which has been fundamental to resolve the reservoir characterization uncertainties and optimizing the completion strategy in a challenging low resistivity reservoir in one drilling run with real-time transmission of high-quality data.
机译:本案例研究提出了墨西哥湾墨西哥泥的墨西哥泥的发展成功故事,最新的高清钻孔图像和综合地层评估 - 虽然来自多个偏移井的私人们数据表明,标准化岩石物理日志不足以精确评估这种低电阻率,低对逆转率。盐侵入的存在损害了表面地震性解释和Poseadational地质挑战,增加了油水接触的不确定性 - 如果错误地识别,会导致早水生产并妥协取得的成功Well.Pepeive在该领域的第一次安装一个独特的高分辨率双物理成像和钻孔系统和先进的Petrophysical LWD测井套件是对最佳储层表征和后续操作决策进行最佳的储层表征。和Sigma测量是必不可少的评价矿物学组成和饱和度估计。从Sigma计算的水饱和度估计自由且结合的流体体积,与电阻率测量无关,这与水溶液和充满水域之间的对比度略微对比。表观电阻率的实时传输图像使低电阻率低对比度储存器的识别和解释似乎由交叉层叠,砂淤叠相块组成。高清定义钻孔图像检测到诸如细层压和裂缝的特征,这是不可能的用先前部署在该领域的标准分辨率测井套件识别。本信息提供了进入储层架构的洞察力和垂直和横向沉积面的可能程度。超声波高和低频钻孔图像进一步帮助了改进关于相关时间的储层架构的理解n Directenally,从高清电阻率导出的表观电阻率为纯电阻率提供了能够识别储层中可移动流体的代理,与奇异钻孔通行的标准电阻率测量相比,并确认了油水接触是一个关键的信息,完成设计,本案例研究表明,普遍LWD测井的岩石物理学和地质解释的整合,这一直是解决储层特征不确定性的基础,并在一个钻井中,在一个钻探运行中的挑战低电阻率水库中优化完成策略。 - 高质量数据的时间传输。

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