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Fracturing-Fluid Flowback Simulation with Consideration of Proppant Transport in Hydraulically Fractured Shale Wells

机译:考虑到液压破裂的页岩井的支撑剂运输的压裂流体流量模拟

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Involving the fluid-particle hydrodynamic process and hydraulically created fracture network, fracturing-fluid flowback in hydraulically fractured shale wells is a complex transport behavior. However, there is limited research on investigating the influence of proppant transport on the fracturing-fluid flowback behavior and flowback data analysis. In this paper, a flowback model is developed to simulate the flowback behaviors of the carrying fluid and proppant from the recompacted fracture system in shale wells. The development of fluid pressure and proppant concentration profiles of the fractured shale well are presented. The fluid and proppant fluxes among the hydraulic primary fracture and the induced fracture are also calculated. The influences of proppant consideration or not, proppant density, proppant size, fracturing-fluid viscosity, and fracturing-fluid density on the flowback behavior are investigated. The simulation results are useful for fracturing-fluid optimization in the design phase. Finally, two field cases from the Longmaxi Formation, Southern Sichuan Basin, China are used for matching the actual flowback data with the model results. The results prove that the proppant transport has influence on the flowback behavior to some degree and should be considered in the flowback model for a rather elaborate flowback analysis and post-treatment fracture evaluation.
机译:涉及流体颗粒流体动力学过程和液压产生的骨折网络,液压破碎的页岩孔中的压裂流体流量是复杂的运输行为。然而,研究了研究支撑剂运输对压裂流体流量行为和流量数据分析的影响有限的研究。在本文中,开发了一种流量模型,以模拟携带流体的流动行为和来自页岩井的重新分解骨折系统的流动性行为。介绍了裂纹页岩阱的流体压力和支撑剂浓度谱的发展。还计算了液压初级骨折和诱导骨折之间的流体和支撑剂通量。研究了支撑剂考虑与支撑剂密度,支撑剂尺寸,压裂流体粘度和压裂流体密度对回流行为的影响。仿真结果对于设计阶段的压裂流体优化是有用的。最后,两种田间案例来自四川盆地南部,中国南部南部河盆地,用于将实际返回数据与模型结果相匹配。结果证明,支撑剂运输对流动行为对某种程度的影响,并且应该在流量模型中考虑,用于相当详细的回流分析和治疗后骨折评估。

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