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Acoustic Emission Monitoring of Heterogeneous Rock Hydraulic Fracturing

机译:异质岩石水力压裂的声发射监测

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In this paper, the results of laboratory studies of hydraulic fracture in homogeneous sandstone blocks with man- made interfaces and heterogeneous shale blocks with weak natural interfaces are reported. Tests were conducted under similar stress conditions, with fluids of different viscosity and at different injection rates. The measurements and analysis allows the identification of fracture initiation and behavior. Fracturing with high viscosity fluids resulted in stable fracture propagation initiated before breakdown, while fracturing with low viscosity fluids resulted in unstable fracture propagation initiated almost simultaneously with breakdown. Analysis also allows us to measure the fluid volume entering the fracture and the fracture volume. Monitoring of Acoustic Emission (AE) hypocenter localizations, indicates the development of created fractured area including the intersection with interfaces, fluid propagation along interfaces, crossing interfaces, and approaching the boundaries of the block. We observe strong differences in hydraulic fracture behavior, fracture geometry and fracture propagation speed, when fracturing with water and high viscosity fluids. We also observed distinct differences between sandstone blocks and shale blocks, when a certain P-wave velocity ray path is intersected by the hydraulic fracture. The velocity increases in sandstones and decreases in shale.
机译:本文报道了均匀砂岩块液压骨折实验室研究的结果。在类似的应力条件下进行测试,具有不同粘度的流体和不同的注射率。测量和分析允许识别骨折启动和行为。在击穿前引发高粘度流体的压裂导致稳定的断裂繁殖,同时具有低粘度流体的压裂导致不稳定的断裂繁殖,几乎同时发起。分析还允许我们测量进入裂缝和骨折体积的流体体积。监测声发射(AE)次缩小型本地化,表明创建的裂缝区域的开发,包括与接口的交叉点,沿接口,交叉接口和接近块的边界的流体传播。当用水和高粘度流体压裂时,我们观察液压断裂行为,断裂几何形状和骨折传播速度的强烈差异。当一定的P波速度射线路径被液压骨折相交时,我们还观察到砂岩块和页岩块之间的明显差异。砂岩的速度增加,页岩的速度下降。

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