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Data Integration and Reservoir Characterization for Organic Rich Unconventional Plays-A Case Study from UAE

机译:有机丰富的非传统戏剧的数据集成与储层特征 - 阿联酋的案例研究

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Several challenges are associated with the characterization of organic rich unconventional plays, most significantly with the identification of sweet spots for optimum placement of horizontal wells, estimation of producible hydrocarbons and subsequent stimulation design. This paper presents the petrophysics and geomechanics integration approach from the X Formation and the important factors for the identification of sweet spots. The case study concentrates on the X Formation that consists of a succession of argillaceous limestone, mostly fine grained packstones and wackestones together with subordinate calcareous shales in the lower part. The complex carbonate lithology and fabric combined with low porosity and the requirement to evaluate total organic carbon presents a challenge to conventional logs and evaluation of them. Amid all the rock properties, the low permeability and productivity dictate the requirement to stimulate the wells effectively. Detailed integration of advanced and conventional log data, core data, mud logs and geomechanical analysis plays a critical role in the evaluation and development of these organic rich unconventional reservoirs. Extensive data gathering was done with wireline logging suite, which covered Resistivitiy/Density/Neutron/Spectral GR-Acoustic logs-Resistivity & Acoustic Images-Dielectric-NMR-Advanced Elemental Spectroscopy technologies and microfrac tests to characterize the hydrocarbon potential, sweet spots and in-situ stress contrast within the organic rich X Formation. The azimuthal and transverse acoustic anisotropies were obtained from X-dipole data to fully characterize the elastic properties of the formation. The static elastic properties were obtained using empirical core correlations as triaxial core tests were not available at the time of the study. The stress profile was calibrated against straddle packer microfrac tests to identify intervals with stress contrast for proper hydraulic fracturing interval selection. The integration of conventional and advanced logs enabled the accurate evaluation of total organic carbon (TOC), petrophysical volumes, and sweet spot selection. The advanced elemental spectroscopy data provided the mineralogy, amount of carbon presence in the rock, and consequently the associated organic carbon within the X Formation. The NMR reservoir characterization provided lithology independent total porosity. The difference between the NMR and density porosities provides additional information about organic matter. NMR data was utilized in this case study to identify and differentiate the organic matter and hydrocarbon presence within the X Formation. Acoustic and image logs provided the geomechanical properties that enable selection of the best intervals for microfrac stress measurement and proper fracture containment modeling. Geomechanical workflow allowed identification of intervals with a good stress contrast in X formation. The core data and stress measurements are recommended for the accurate calibration of the stress profiles and hydraulic fracture propagation modeling. The extensive data integration work presented in this single-well study within X Fomation, is a key factor for any organic rich unconventional reservoir characterization that integrated geology, petrophysics, mineralogy, and geomechanics for sweet spot identification within tight oil carbonate reservoirs.
机译:几种挑战与有机丰富的非常规竞争的表征有关,最显着地利用甜点尺寸的液态井,估计可生产碳氢化合物和随后的刺激设计的甜点。本文介绍了X组的岩石物理学和地质力学集成方法,以及鉴定甜点的重要因素。案例研究专注于X形成,包括骨灰岩石灰岩的连续,主要是细粒粒细胞和瓦片,以及下部的下属钙质页岩。复杂的碳酸盐岩性和织物与低孔隙率和评估总有机碳的要求呈对对常规原木的挑战和对它们的评估。在所有岩石属性中,低渗透率和生产力都决定了有效刺激井的要求。详细集成先进和传统的日志数据,核心数据,泥伐和地质力学分析在这些有机丰富的非传统水库的评估和开发中起着关键作用。使用有线测井套件进行了广泛的数据收集,该覆盖了电阻/密度/中子/光谱GR声测量 - 电阻率和声学图像 - 介质-NMR-Advanced元素光谱技术和微磨机测试,以表征碳氢化合物潜力,甜点和-situ压力对比有机丰富的X形成。从X-偶极数据获得方位角和横向声学各向异性,以完全表征形成的弹性性质。使用经验核心相关获得静态弹性特性,因为在研究时不可用三轴核心试验。压力曲线针对跨跨填料微磨削测试校准,以确定具有适当液压压裂间隔选择的应力对比的间隔。传统和高级日志的集成使得能够准确评估总有机碳(TOC),岩石物理体积和甜点选择。先进的元素光谱数据提供矿物质,岩石中的碳存在量,因此X形成内的相关有机碳。 NMR储存表征提供了独立的全孔隙率的岩性。 NMR和密度孔隙率之间的差异提供有关有机物质的额外信息。在这种情况下使用NMR数据来识别和将有机物质和烃存在分化在X形成内。声学和图像日志提供了能够选择微磨机应力测量和适当的骨折容纳建模的最佳间隔选择的地质力学属性。地质力学工作流程允许识别间隔,在X的形成中具有良好的应力对比。建议核心数据和应力测量来准确校准应力型材和液压断裂传播建模。在X原料中的这种单井研究中提供的广泛数据集成工作是任何有机丰富的非传统储层特征的关键因素,即综合地质,岩石物理学,矿物学和地质力学,在紧密的油碳酸盐储层内甜点鉴定。

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