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New Insights of Formation Damage Caused by Borate CrosslinkerFracturing Fluids

机译:硼酸盐交联剂引起的地层损害的新见解

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Hydraulic fracturing has substantially increased the productivity of unconventional reservoirs. The most widely used one is the cross-linked fracturing fluids. Therefore this study analyzed the formation damage issues caused by borate cross-linked fracturing fluids. Results shows that permeability of formation and proppant pack conductivity are greatly affected by reside left behind. The unbroken polymer chains may be cross-linked again if favor conditions present. The residue will ultimately reduce the conductivity of sand pack and only a small amount of guar residue can be displaced with production. To minimize the formation damage problems caused by polymer residue, the concentration of breaker needs to be the optimum value. To help analyze the degradation extent of fracturing fluids, flow-back fluids can be analyzed through various chemical analysis methods, taking into account the dilution effect of produced water.
机译:水力压裂大大提高了非常规油藏的生产率。使用最广泛的一种是交联压裂液。因此,本研究分析了硼酸盐交联压裂液引起的地层破坏问题。结果表明,地层的渗透率和支撑剂充填层的电导率受滞留的影响很大。如果存在有利条件,则未断裂的聚合物链可以再次交联。残留物最终会降低沙堆的电导率,并且只有少量瓜尔豆残留物可以随生产而被置换。为了最小化由聚合物残留物引起的地层破坏问题,破胶剂的浓度需要为最佳值。为了帮助分析压裂液的降解程度,可以考虑到采出水的稀释效果,通过各种化学分析方法对回流液进行分析。

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