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Co-evolution of Friction and Permeability in a Propped Fracture under Constant Shear and Implication to Induced Seismicity

机译:在恒定剪切局部裂缝中摩擦和渗透率的共同演变,含义诱导地震性

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摘要

In this study, we explore the evolution of friction and permeability of a propped fracture using shearing-concurrent measurements of permeability during constant velocity shearing experiments. We separately examine the effects of normal stress (1 MPa, 3 MPa and 5 MPa), proppant thickness (mono-, double-and triple-layer), proppant size (40/80 mesh, 30/50 mesh and 20/40 mesh) and rock texture (Green River shale and Westerly granite) on the frictional and transport response of proppant packs confined between planar fracture surfaces. The results indicate that proppant-absent and proppant-filled fractures show different frictional strength. For fractures with proppants, we observed that (1) the frictional response is mainly controlled by the normal stress and proppant thickness, (2) permeability of the propped fracture is mainly controlled by the magnitude of the normal stress, the proppant thickness and the proppant size. Permeability of the propped fracture decreases during shearing, which is plausibly due to proppant particle crushing and related clogging. Proppants become prone to crushing if the shear loading evolves concurrently with the normal loading. Above combined conclusions suggest the use of high-concentration proppants in the field, which not only provides high hydraulic conductivity for hydro-carbon production, but also help to mitigate the risk of induced seismicity.
机译:在这项研究中,我们使用在恒定速度剪切实验期间使用剪切 - 同时测量渗透性测量来探讨支撑骨折的摩擦和渗透率的演变。我们分别检查正常应力(1MPa,3MPa和5MPa),支撑剂厚度(单,双层和三层),支撑剂尺寸(40/80目,30/50目和20/40目的的影响)岩石纹理(绿河页岩和西方花岗岩)关于Planar裂缝表面之间的支撑剂包的摩擦和运输响应。结果表明,支撑剂 - 不存在和填充的填充骨折显示出不同的摩擦强度。对于带有支撑剂的骨折,我们观察到(1)摩擦响应主要由正常应力和支撑剂厚度控制,(2)支撑骨折的渗透率主要由正常应力,支撑剂厚度和支撑剂的尺寸控制尺寸。在剪切期间,丙位断裂的渗透率降低,这是由于支撑剂颗粒破碎和相关的堵塞是可粘性的。如果剪切装载与正常负载同时演变,则支撑剂变得易于破碎。高于组合结论建议使用该领域的高浓度支撑剂,这不仅为水电碳生产提供了高液压导电性,还有助于减轻诱导地震性的风险。

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