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首页> 外文期刊>Journal of Petroleum Science & Engineering >Stability and conductivity of proppant packs during flowback in unconventional reservoirs: A CFD-DEM simulation study
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Stability and conductivity of proppant packs during flowback in unconventional reservoirs: A CFD-DEM simulation study

机译:在非传统储层流量期间支撑剂包的稳定性和电导率:CFD-DEM模拟研究

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摘要

We present simulations using a coupled Computational Fluid Dynamics-Discrete Element Method (CFD-DEM) approach for a slurry of millimeter-sized particles in water which is squeezed between two walls and then made flow out though a narrow aperture. The process is akin to the flowback stage in the near wellbore zone of a hydraulic-stimulated well for hydrocarbon recovery. We consider different wall roughness and investigate its effect on particle production, final distance between walls, spatial particle distribution between the walls, and fluid production rate. We have found that the final distribution of particles changes significantly with small variations in the roughnesses of the walls. This in turn leads to production flow rates that may vary up to 50%. Although the main driver of the production for unconventional wells is the propped fracture network, these results suggest that the roughness of the fracture walls seems to play an important role in the final conductivity and therefore in the ultimate recovery.
机译:我们使用耦合计算流体动力学离散元方法(CFD-DEM)对水中毫米级颗粒的泥浆进行了模拟,该泥浆被挤压在两个壁之间,然后通过窄孔径流出。该过程类似于用于油气开采的水力刺激井近井区的回流阶段。我们考虑不同的壁粗糙度,并研究其对颗粒产生、壁间最终距离、壁间的空间颗粒分布和流体生产率的影响。我们发现,随着壁面粗糙度的微小变化,颗粒的最终分布会发生显著变化。这反过来会导致生产流量变化高达50%。尽管支撑裂缝网络是非常规井产量的主要驱动因素,但这些结果表明,裂缝壁的粗糙度似乎对最终的电导率以及最终的采收率起着重要作用。

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