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Detecting the propped fracture by injection of magnetic proppant during fracturing

机译:通过注射压裂期间磁性支撑剂检测支撑骨折

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摘要

Hydraulic fracturing is key to enhancing the productivity of shale and tight hydrocarbon reservoirs, as well as geothermal resources from hot dry rock. Assessing the range and efficiency of hydraulic fracturing is very important for onsite fracturing operations and decision making on subsequent fracturing plans and well-pattern deployment. The idea of injecting fluid mixed with magnetic material into a formation to detect subterranean structure has been considered for a long time. The detectability of the characteristics of propped fractures using magnetic field-measurement is discussed and evaluated with an analytical model. The magnetic proppants synthesized with superparamagnetic nanoparticles should be "silent" during injection and could be activated by an external current. By measuring the magnetic field before and after the fracture was created and the magnetic proppants were magnetized, the magnetic anomalies can be obtained. The result indicates that the magnetic field caused by a fracture filled with magnetic proppants is very weak, so that magnetometers with higher precision and resolution should be used to capture such subtle signal. The higher susceptibility contrast of the magnetic nanoparticles is, the stronger external magnetic induction field could be detected. It is suggested that the superparamagnetic nanomaterial with effective magnetic susceptibility contrast of greater than 0.4-0.5 should be used for fracture monitoring in deep wells. To infer the fracture characteristics with the magnetic anomaly, the ground and adjacent wells' monitoring practices are recommended.
机译:液压压裂是提高页岩和紧密碳氢化合物储层生产率的关键,以及热干岩的地热资源。评估液压压裂的范围和效率对于现场压裂操作和随后的压裂计划和良好模式部署的决策非常重要。长时间考虑了将与磁性材料混合成用于检测地下结构的磁性材料的流体的想法。讨论使用磁场测量的支撑骨折特性的可检测性,并用分析模型评估。用超顺磁纳米颗粒合成的磁性支撑剂应在注射期间是“沉默”,并且可以通过外部电流激活。通过测量裂缝之前和之后的磁场并且磁化磁性支撑剂被磁化,可以获得磁异常。结果表明,由于填充有磁性支撑剂的骨折引起的磁场非常弱,因此应使用具有更高精度和分辨率的磁力计来捕获这种微妙的信号。磁性纳米颗粒的较高敏感性对比度是,可以检测更强的外部磁感应场。建议,具有大于0.4-0.5的有效磁化率对比度的超顺磁性纳米材料应用于深井中的断裂监测。推荐使用磁性异常,地面和相邻的井的监测实践推断断裂特性。

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    China Univ Petr East China Sch Petr Engn 66 Changjiang West Rd Qingdao 266580 Shandong Peoples R China;

    China Univ Petr East China Sch Petr Engn 66 Changjiang West Rd Qingdao 266580 Shandong Peoples R China;

    Univ Oklahoma Mewbourne Sch Petr &

    Geol Engn SEC 1362 100E Boyd Norman OK 73019 USA;

    China Univ Petr East China Sch Petr Engn 66 Changjiang West Rd Qingdao 266580 Shandong Peoples R China;

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  • 正文语种 eng
  • 中图分类 地球物理学;
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