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Visualization of drained rock volume (DRV) in hydraulically fractured reservoirs with and without natural fractures using complex analysis methods (CAMs)

机译:使用复杂分析方法(CAM)可视化具有或不具有天然裂缝的水力压裂储层的排水岩量(DRV)

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The drainage areas (and volumes) near hydraulically fractured wells, computed and visualized in our study at high resolution, may be critically affected by the presence of natural fractures. Using a recently developed algorithm based on complex analysis methods (CAMs), the drained rock volume (DRV) is visualized for a range of synthetic constellations of natural fractures near hydraulic fractures. First, flow interference effects near a single hydraulic fracture are systematically investigated for a variety of natural fracture sets. The permeability contrast between the matrix and the natural fractures is increased stepwise in order to better understand the effect on the DRV. Next, a larger-scale model investigates flow interference for a full hydraulically fractured well with a variety of natural fracture sets. The time of flight contours (TOFCs) outlining the DRV are for all cases with natural fractures compared to a base case without any natural fractures. Discrete natural fractures, with different orientations, hydraulic conductivity, and fracture density, may shift the TOFC patterns in the reservoir region drained by the hydraulically fractured well, essentially shifting the location of the well’s drainage area. The CAM-based models provide a computationally efficient method to quantify and visualize the drainage in both naturally and hydraulically fractured reservoirs.
机译:在我们的研究中以高分辨率计算和可视化的,在水力压裂井附近的排水面积(和体积)可能会受到天然裂缝的严重影响。使用基于复杂分析方法(CAM)的最新开发的算法,可以在水力压裂附近的自然裂缝的一系列合成星座中可视化排水岩体积(DRV)。首先,针对各种天然裂缝组,系统地研究了单个水力压裂附近的流动干扰效应。逐步增加基质与天然裂缝之间的渗透率对比,以便更好地了解对DRV的影响。接下来,一个大型模型研究了具有各种天然压裂组的全液压压裂井的流动干扰。概述DRV的飞行时间轮廓线(TOFC)适用于所有自然裂缝情况,而不是没有自然裂缝情况的基本情况。具有不同方向,水力传导率和裂缝密度的离散天然裂缝可能会改变水力压裂井排出的储层区域中的TOFC模式,从而实质上改变了井的排水区域。基于CAM的模型提供了一种计算有效的方法,可以对天然和水力压裂储层中的排水进行量化和可视化。

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