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Interconnected Fiber Network Prevents Gravel Washout in Water Injector Wells

机译:互联光纤网络可防止水喷射器井中的砾石冲洗

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In water injector wells, continuous injection can wash gravel from the annulus around the screen, especially if the rate of injection generates a pressure above the fracture threshold. The voids created after the washout are sometimes filled by an influx of formation sand during shut-in operations. This sand accumulation consequently reduces the injectivity when the injection operations resume. A solution to prevent such washouts is needed to maintain sand control and injectivity throughout the life of water injector wells. As a solution to this common problem, we propose a new fiber based product that reinforces the gravel and/or proppant pack. The fibers have an outside layer that is activated by temperature to form a bonded fiber network that locks the gravel in place. The fibers can be used with any type and size of proppant. The key benefit is that the fibers can withstand the cyclic loading of stress inherent to the shut-in and restart of injection operations, which are typically performed several hundred times during the life of an injector well. Our experimental study showed that the drag force of injected water easily displaced the gravel in the annulus into the fracture, whereas when gravel is reinforced with the fibers it withstood the drag force even at high injection rates (e.g., at 100 B/D per 0.5-in.-diameter perforation). We performed several experiments to evaluate the strength of the pack under cyclic stress conditions. After 30 cycles, the pack strength remained unaffected. The fiber chemistry was tailored for compatibility with commonly used fracturing fluids and brines. We found that the fibers remained connected in an interconnected network even after long-term interaction with seawater. We also studied the interaction of fibers with screens and other downhole equipment that comes in contact with the fibers during gravel placement. The laboratory results of that study showed the fibers do not create any issues with proppant placement or tool functionality during the sand control operation. Our experimental study also showed the fibers provided an effective solution for preventing gravel washout in water injector wells, thereby supporting the sand control and injectivity for the life of the well.
机译:在水喷射器孔中,连续喷射可以从屏幕周围的环形空间清洗砾石,特别是如果注射率产生高于裂缝阈值的压力。洗涤外产生的空隙有时被关入操作期间的形成砂涌入填充。因此,该砂积聚在注射操作恢复时降低了注射性。需要防止这种冲洗的溶液在整个水喷射器井中保持砂控制和注射性。作为这种常见问题的解决方案,我们提出了一种新的基于纤维的产品,可加强砾石和/或支撑剂包。纤维具有由温度激活的外层,以形成锁定砾石的粘结光纤网络。纤维可与任何类型和尺寸的支撑剂一起使用。关键益处是纤维可以承受固有的循环加载固有的压力,并重启注射操作,这通常在喷射器的寿命期间执行数百倍。我们的实验研究表明,注入水的拖曳力容易将砾石移位到骨折中,而当砾石用纤维加固时,即使在高注射率下用它以牵引力和100b / d以100b / d为0.5 -in-直径穿孔)。我们在循环应力条件下进行了几次实验来评估包装的强度。 30次循环后,包装强度仍未受到影响。纤维化学量身定制,可与常用的压裂液和盐水相容。我们发现即使在与海水的长期相互作用之后,纤维仍然在互连的网络中连接。我们还研究了在砾石放置期间与纤维接触的屏幕和其他井下设备的纤维的相互作用。该研究的实验室结果表明,在砂控制操作期间,纤维不会在支撑剂放置或工具功能中产生任何问题。我们的实验研究还显示了纤维提供了一种有效的解决方案,用于防止水喷射器井中的砾石冲洗,从而支撑井的寿命的砂控制和注射性。

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