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Shale Formation: What Do We Learn about Fracture ConductivityDamage?

机译:页岩形成:我们将从断裂电导率损伤中学到什么?

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Hydraulic fracturing has been the most efficient treatment option for exploitation of shale reservoirs. However due to intrinsic properties of shale formation, fracture conductivity damage usually occurs through multi mechanisms. To minimize the fracture conductivity damage, extensive analysis should be conducted regarding to the properties of shale formations, properties of fracturing fluids and properties of proppants. Clay swelling, fines migration, proppant diagnosis, proppant crushing, and proppant embedment are the most important factors that affect fracture conductivity and well productivity over a long production time. Once damage occurs, optional remediation plans should be conducted to minimize the damaging effect.
机译:水力压裂已成为开发页岩储层最有效的处理选择。但是,由于页岩形成的内在特性,通常通过多种机制发生裂缝导流能力的破坏。为了使裂缝导流破坏最小化,应该对页岩地层的性质,压裂液的性质和支撑剂的性质进行广泛的分析。黏土膨胀,细粒迁移,支撑剂诊断,支撑剂压碎和支撑剂包埋是在长时间内影响裂缝导流能力和产能的最重要因素。一旦损坏发生,应执行可选的修复计划,以最大程度地减少损坏效果。

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