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Quantitative and visual analysis of proppant transport in rough fractures

机译:粗糙裂缝中支撑剂运移的定量和视觉分析

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The consensus reached in the literature is that the roughness of fractures plays a crucial role on proppant transport affecting the aperture sustainability and conductivity of hydraulic fractures. To clarify this, an experimental scheme and analysis are presented in this paper. Propping agents were introduced into seven different transparent fracture replicas obtained from different origin rock samples (granite, marble, and limestone) at a high rate mimicking hydraulic fracturing process conditions. The inlet pressure was continuously monitored to quantify the change in hydraulic conductivity due to proppant distribution. Corresponding images were collected to trace the transport of proppants and their behavior was correlated to the measured pressure drop (representing conductivity) change. Experiments were repeated on joint (perfectly mating) and horizontally displaced (sheared-unmating) models using water and polymer solution.
机译:在文献中达成的共识是,裂缝的粗糙度对支撑剂传输起着至关重要的作用,影响了孔隙度的可持续性和水力裂缝的传导性。为了澄清这一点,本文提出了一种实验方案和分析。将支撑剂以与水力压裂工艺条件类似的高速率引入到从不同来源的岩石样品(花岗岩,大理石和石灰石)中获得的七个不同的透明裂缝复制物中。连续监测入口压力以量化由于支撑剂分布引起的水力传导率的变化。收集相应的图像以追踪支撑剂的传输,其行为与测得的压降(代表电导率)变化相关。使用水和聚合物溶液对联合(完全配合)和水平位移(剪切-取消配合)模型进行了重复实验。

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