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A coupled wellbore-hydraulic fracture simulator for rigorous analysis of frac-pack applications

机译:耦合井筒-液压裂缝模拟器,可对压裂压裂应用进行严格分析

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Frac pack stimulations have been used extensively to provide a combined treatment for well stimulation and sand control. It has been observed that treatment failure in such operations is often caused by a premature wellbore screen out. However, untillnow the design and evaluation of such treatments have been performed solely using fracture simulators that neglect the effect of the wellbore hardware (crossover ports, blank, screen, washpipe, etc.) on the treatment. In an effort to address this limitation, a wellbore simulator was coupled with a fracture simulator to provide the capabilities of predicting, and subsequently eliminating, such occurrences. The fracture simulator calculates the fracturing parameters such as proppant distribution in the fracture, fracture height, and two-dimensional fluid flow. These parameters provide the boundary conditions for the wellbore simulator. Additionally, the fracture simulator was enhanced to correctly simulate fluid leakoff and tip screen out designs in high permeability formations. The fluid and proppant flow around the screen is calculated ssing a pseudo three-dimensional wellbore simulator which provides a complete design and evaluation tool of frac pack treatment. The effects of a deviated wellbore, proppant bridging around the screen, proppant settling in the wellbore, and fluid flow through the screen are taken into account; in addition, the coupled simulator can model an induced wellbore screenout at the end of the treatment either due to a deliberate reduction of the injection rate or the shifting of the tool to the circulating position. This paper shows a field example using this coupled simulator to evaluate a frac pack treatment that was terminated due to a premature screen out. The calibration test is initially analyzed following which the frac pack treatment is simulated and compared with field measurements.
机译:Frac Pack增产措施已被广泛使用,以提供井眼增产和防砂的综合处理。已经观察到,这种操作中的处理失败通常是由于过早地将井眼筛出而引起的。但是,直到现在,仅使用裂缝模拟程序进行此类处理的设计和评估,而忽略了井眼硬件(交叉口,毛坯,滤网,冲洗管等)对处理的影响。为了解决这一局限性,将井眼模拟器与裂缝模拟器结合使用,以提供预测并随后消除此类事件的能力。裂缝模拟器计算裂缝参数,例如裂缝中的支撑剂分布,裂缝高度和二维流体流动。这些参数为井筒模拟器提供了边界条件。此外,增强了裂缝模拟器,以正确模拟高渗透率地层中的流体泄漏和端头筛出设计。筛网周围的流体和支撑剂流量是通过使用伪三维井眼模拟器来计算的,该模拟器提供了压裂充填处理的完整设计和评估工具。应考虑井眼偏斜,支撑剂在筛网周围桥接,支撑剂在井眼中沉降以及流体通过筛网的影响。另外,由于有意降低注入速率或工具向循环位置移动,耦合的模拟器可以在处理结束时对诱导的井眼筛选进行建模。本文展示了一个现场实例,该实例使用此耦合模拟器评估压裂充填处理,该处理由于过早的筛分而终止。首先对校准测试进行分析,然后模拟压裂包装处理并将其与现场测量结果进行比较。

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