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Parameters Affecting Load Recovery and Oil Breakthrough Time after Hydraulic Fracturing in Tight Oil Wells

机译:液压压裂后液压油井液压压裂后的负荷回收和油突破性的参数

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After hydraulic fracture treatment, wells typically produce significant volumes of water, which is primarily recovered fracturing fluid. The amount of fracturing fluid produced back is called load recovery. Single phase water production may continue for several days before oil breakthrough from the formation occurs. A wide range of load recoveries (15%–80%) are reported in the literature, depending on various reservoir, fracture, pumping and operational parameters. This study conducts a comprehensive numerical and statistical analysis to identify the most important parameters affecting load recovery. The sensitivity of oil breakthrough time to these parameters is also investigated. A fit-for-purpose model was created using a commercial coupled reservoir flow/geomechanics simulator to simulate fracturing treatment and flowback operations. Water and oil production trends, and flow regimes observed in the model, are verified using rate-transient analysis (RTA). The effect of twenty parameters including pumping rate, shut-in time, producing bottomhole pressure, production rate constraint, matrix porosity and permeability, matrix and hydraulic fracture compressibility, relative permeability end points and capillary pressure on load recovery and oil breakthrough time is investigated by utilizing Design of Experiment (DOE). The developed model considers non-uniform leak-off during pumping, providing a better understating of water retention, while the application of the DOE method allows the effect of various parameters and their interaction to be studied rigorously. A critical finding is that the majority of total load recovery occurs within the first three months of production. Furthermore, matrix permeability, shut-in time, connate water saturation and fracture compressibility, were found to be the most dominant factors, which can impact the load recovery by up to 22%, 15%, 14%, and 13%, respectively. Matrix permeability, production rate constraint, fracture residual oil saturation and shut-in time are four of the prominent parameters affecting oil breakthrough time. Understanding the impact of operational parameters such as shut-in time and production rate can help industry to implement recycling/disposal options and ultimately optimize load recovery. This can also create significant environmental compliance benefits for operators in addition to benefitting operational efficiency.
机译:在液压断裂处理后,井通常产生大量的水,其主要回收压裂液。背部产生的压裂液的量称为负载恢复。单相水产量可能会在发生从地层的油突破前持续数天。文献中报告了广泛的负载回收率(15%-80%),取决于各种水库,断裂,泵送和操作参数。本研究进行了全面的数值和统计分析,以确定影响负载恢复的最重要参数。还研究了油突破时间对这些参数的敏感性。使用商业耦合储存器流量/地质力学模拟器创建适合型号,以模拟压裂处理和流量操作。使用速率瞬态分析(RTA)验证模型中观察到的水和石油生产趋势和流量制度。 20个参数的效果包括泵送速率,闭合时间,产生井孔压力,生产率约束,基质孔隙率和渗透性,基质和液压断裂性,对负荷回收和油突破时间的相对渗透性终点和毛细管压力利用实验设计(DOE)。在泵送期间,开发的模型考虑了不均匀的泄漏,提供了更好的水潴留低估,而DOE方法的应用允许严格研究各种参数及其相互作用的影响。危重发现是大多数总负荷恢复发生在生产的前三个月内。此外,发现基质渗透率,闭合时间,治疗水饱和度和断裂压缩性,是最多的主要因素,可分别将负荷回收率恢复至22%,15%,14%和13%。基质渗透率,生产率约束,断裂残余油饱和度和关闭时间是影响油突破时间的突出参数。了解操作参数的影响,如关闭时间和生产率可以帮助行业实施回收/处置选项,并最终优化负载恢复。除了受益运营效率外,这还可以为运营商创造重大的环境合规益处。

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