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Experimental Research on the Conductivity of a Fracture Influenced by Fiber

机译:纤维影响断裂的电导率实验研究

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The conductivity of fracture is significant for fractured well production. In order to study the influence of glass fiber, which is used for preventing proppant flowback on conductivity of proppant, the conductivities of various proppants were tested by applying FCES-100 device, thus grasping the law of proppant conductivity change with fiber and fracturing fluid residues. The experimental results indicate that the law is similar for various proppants. The fiber is nearly no influence on proppant conductivity under lower pressure. However the influence of fiber becomes prominent when increasing pressure. The conductivity of proppant decreases about 30-40% caused by fiber when the pressure reaches 70 MPa. Fracturing fluid residues can reduce the conductivity of proppant more than 50% and combined with fiber the conductivity of proppant can be reduced more than 70%. So it is suggested that fiber should not be used for preventing proppant flowback in high closure pressure reservoir.
机译:裂缝的电导率对于裂缝井的生产很重要。为了研究用于防止支撑剂回流的玻璃纤维对支撑剂电导率的影响,采用FCES-100装置测试了各种支撑剂的电导率,从而掌握了支撑剂电导率随纤维和压裂液残留量变化的规律。 。实验结果表明,各种支撑剂的规律相似。纤维在较低压力下几乎不影响支撑剂的导电性。然而,当增加压力时,纤维的影响变得显着。当压力达到70 MPa时,由纤维引起的支撑剂电导率下降约30-40%。压裂液残余物可将支撑剂的电导率降低50%以上,与纤维结合使用时,支撑剂的电导率可降低70%以上。因此,建议不要在高密闭压力储层中使用纤维来防止支撑剂回流。

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