首页> 外文会议>Society of Petroleum Engineers Unconventional Gas Conference >Application of High Resolution Micro-CT Imaging and Pore Network Modeling (PNM) for the Petrophysical Characterization of Tight Gas Reservoirs - A Case History from a Deep Clastic Tight Gas Reservoir in Oman
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Application of High Resolution Micro-CT Imaging and Pore Network Modeling (PNM) for the Petrophysical Characterization of Tight Gas Reservoirs - A Case History from a Deep Clastic Tight Gas Reservoir in Oman

机译:高分辨率微型CT成像和孔网络建模(PNM)对岩石水库岩石物理特征的应用 - 阿曼深层泥浆储气水库的案例历史

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The paper provides a case history of the application of 3D imaging and Pore Network Modeling (PNM) technology to establish a direct relationship between rock micro-structure parameters from 3D via micro-tomographic images, and the simulation of petrophysical properties of clastic tight gas reservoir rocks in Oman. Tight gas reservoirs exhibit storage and flow characteristics that are intimately tied to the depositional and diagenetic processes. In particular, cores have significant primary and secondary porosity often dominated by clays and slot like pores. Accurately mapping the pore and grain structure and mineralogy in 3D and the interconnectivity of primary and secondary porosity illustrates the role 3D imaging plays in a comprehensive reservoir characterization program. The computed petrophysical properties (e.g. porosity, permeability, formation resistivity factor, hydraulic radii and drainage capillary pressure) are compared with routine and special core analysis results measured on conventional core samples. The use of 3D micro-tomograms at different scales and PNM provides a quick complimentary method to characterize the distribution and nature of different pore types and matrix components to characterize the static, elastic and dynamic rock properties even on rock fragments (2mm to 1cm diameter) that are not suitable for conventional core analysis techniques. The presented case history demonstrates that the new 3D PNM technologies can also be successfully applied to the challenging tight gas reservoirs with low porosities and very low permeabilities for comprehensive reservoir characterization to optimize the development scenarios.
机译:本文提供了3D成像和孔隙网络模型(PNM)技术的应用,以建立岩微结构参数之间从3D经由微断层图像的直接关系的情况下的历史,和碎屑致密气藏的岩石物理性质的模拟岩石在阿曼。致密气藏表现出紧密联系在一起的沉积和成岩过程存储和流动特性。特别是,芯具有显著初级和次级孔隙通常由粘土和槽状孔支配。准确地映射在三维孔隙和晶粒结构和矿物学和初级和次级孔隙的互连性示出3D成像全面油藏描述程序中扮演的角色。所计算的岩石物理性质(例如孔隙度,渗透性,地层电阻率系数,流体力学半径和排水的毛细管压力)与常规和传统的核心样品测量芯特殊分析结果进行比较。使用3D微断层图像在不同尺度和PNM提供了一种快速免费方法来表征不同孔隙类型和基质组分的分布和性质来表征静态的,即使是在岩石碎片弹性和动态岩石性质(2毫米至1cm直径)这不适合于常规的核心分析技术。所提出的情况下,历史表明,新的3D技术PNM也可以成功地应用到低孔隙度和低渗透率的综合储层特征的具有挑战性的致密气藏优化开发方案。

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