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Proppant backflow: Mechanical and flow considerations

机译:支撑剂回流:机械和流量方面的考虑

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摘要

One of the concerns of using proppant in geothermal wells, and particularly in enhanced geothermal systems, is proppant flowback. Particulate proppant maintain post-closure conductivity in hydraulically opened fractures. If that proppant is displaced from the near-wellbore region, either due to overflushing during stimulation or flowback to the wellbore at any time, the reduced fracture width chokes the injection or production. Two intermediate-scale laboratory analogs of a propped hydraulic fracture were prepared, and fluid was flowed through a normally stressed, propped fracture into a central wellbore. The tests were conducted in a polyaxial load frame. Acoustic/microseismic activity was measured during the injection programs. In one scenario radial flow through a transverse fracture to a wellbore the results suggest the creation of flow channels and nominally intact propped zones around the channels, maintaining fracture aperture. In the other linear flow through a longitudinal fracture into a wellbore there was substantially more proppant removal. The measurements have shown a greater tendency for proppant flowback in a linear flow situation (proppant movement is kinematically more restricted for radial convergent flow). The pressure gradients causing flow are exceedingly small and restraining flowback will be difficult. Convergent flow relationships could be an issue for injector wells, which will experience fluid flowback during hard shutdowns. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在地热井中,特别是在增强型地热系统中使用支撑剂的关注点之一是支撑剂回流。在水力开裂的裂缝中,颗粒支撑剂保持闭合后的电导率。如果该支撑剂由于增产过程中的过度冲洗或由于任何时候回流到井眼而从近井眼区域驱替,那么减小的裂缝宽度就会阻碍注入或生产。准备了两个中等规模的实验室模拟的水力压裂裂缝,然后使流体通过常应力,支撑的压裂裂缝流入中心井眼。测试是在多轴负载框架中进行的。在注射程序中测量了声学/微震活性。在一种情况下,径向流穿过横向裂缝到达井眼,结果表明形成了流道和通道周围名义上完整的支撑区域,从而保持了裂缝的孔径。通过纵向裂缝进入井眼的另一条线性流中,支撑剂的去除率要高得多。这些测量结果显示,在线性流动情况下,支撑剂的回流趋势更大(在运动学上,对于径向会聚流,支撑剂的运动受到更大的限制)。引起流动的压力梯度非常小,很难限制回流。对于注入井而言,会聚的流动关系可能是一个问题,因为注入井在硬关闭期间会经历回流。 (C)2015 Elsevier Ltd.保留所有权利。

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