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Wetting Phase Bridges Establish Capillary Continuity Across Open Fractures and Increase Oil Recovery in Mixed-Wet Fractured Chalk

机译:润湿相桥可在开放裂缝之间建立毛细管连续性,并提高混合湿裂缝粉笔中的采油率

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摘要

The effect of fractures on oil recovery and in situ saturation development in fractured chalk has been determined at near neutral wettability conditions. Fluid saturation development was monitored both in the matrix and in the fractures and the mechanisms of fracture crossing were determined using high spatial resolution MRI. Capillary continuity across open oil-filled fractures was verified by imaging the water bridges established within the fracture. Despite an alternate escape fracture for the water, separate water bridges were shown to be stable for the entire duration of the experiments. The established capillary contact resulted in oil recovery exceeding the spontaneous imbibition potential in the outlet-isolated cores by ca. 10% PV. This is explained by viscous recovery provided by water bridges across open fractures. The size of the bridges seemed to be controlled by the wettability of the rock and not by the differential pressure applied across the open fracture.
机译:已经在接近中性的润湿性条件下确定了裂缝对裂缝白垩中油采收率和原位饱和度发展的影响。监测基质和裂缝中的流体饱和度发展情况,并使用高空间分辨率MRI确定裂缝穿越的机制。通过对裂缝内建立的水桥进行成像,可以验证开放式充油裂缝中的毛细管连续性。尽管存在水的交替逸出裂缝,但在整个实验过程中,单独的水桥显示出是稳定的。建立的毛细管接触导致采油量超过出口隔离型岩心中的自吸能力约200埃。 PV的10%。这可以通过跨开放裂缝的水桥提供的粘性恢复来解释。桥的大小似乎是由岩石的润湿性控制的,而不是由在开放裂缝上施加的压差控制的。

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