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Multiscale fracture length analysis in carbonate reservoir units, Kurdistan, NE Iraq

机译:碳酸盐储层装置的多尺度骨折长度分析,Kurdistan,Ne Iraq

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摘要

Fracture scaling parameters are an important input for modelling of naturally fractured reservoirs, but are very difficult to derive from subsurface data. Extensive areas of exposure in the northern Kurdistan Region of Iraq provide useful outcrop analogues for nearby producing and potential hydrocarbon fields. A variety of data acquisition methods are used to analyse fracture systems in carbonates of the Upper Cretaceous Aqra-Bekhme Formation across a wide range of scales. When plotted on length-intensity graphs, the collated data lie below an upper envelope that follows a power-law distribution over five orders of magnitude between 0.1 and 3000 m, and which defines the maximum likely intensity of background fracturing across the region. Contouring the length-intensity data shows the distribution of intensities below the upper envelope, and allows modal and minimum likely intensities to be estimated. Likely causes for the observed variation in fracture intensities include the domainal nature of deformation, the proximity to high strain zones including faults, second-order effects such as ladder fractures, and variations in the thickness of mechanical layering.
机译:裂缝缩放参数是用于建模自然裂缝储层的重要输入,但非常难以得出来自地下数据。伊拉克北库尔德斯坦地区的广泛暴露领域为附近生产和潜在的碳氢化合物领域提供了有用的露头类似物。各种数据采集方法用于分析跨各种秤的上白垩纪AQRA-BEKHME形成的碳酸盐裂缝系统。当绘制长度强度图上时,整理数据位于上部封装下方,遵循0.1和3000米之间的五个级超过五个数量级,并且定义了整个区域的最大可能强度。轮廓呈长度 - 强度数据显示上部信封下方的强度分布,并允许估计模态和最小可能强度。可能对裂缝强度变化的原因包括变形的区域性质,邻近高应变区,包括故障,二阶效应,例如梯形裂缝,以及机械分层厚度的变化。

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