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An experimental study on the mechanism of degradable fiber-assisted diverting fracturing and its influencing factors

机译:降解纤维辅助转向压裂机理及其影响因素的实验研究

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Fiber-laden fluid systems have been successfully applied for reorientation fracturing in tight gas and shale gas reservoirs around the world. Although many successful cases have been, reported in the literature, there is a lack of a deep understanding of the mechanical mechanism of fiber-assisted diverting fracturing. Hence, this paper presents a systematic study of the fracture diversion mechanisms of the fiber-diverting fracturing technique. A series of laboratory experiments is conducted with a real tri-axial stress simulation system. Degradable fibers are applied to large-size natural outcrop samples (300 mm x 300 mm x 300 mm) under true triaxial stress conditions. The dynamic filtration experiment to test the temporary plugging ability showed that the fractures were effectively plugged by fiber fluids. A variety of factors related to the fracture reorientation are tested and compared, including injection rate, fracture width and horizontal principal stress difference. The additional pressure drop caused by the fiber filtration cake is calculated and used to quantitatively analyze the effects on fracture reorientation. The net pressure increase is the driving force of the fracture diversion and formation of the fracture network. The conclusions were used to guide carbonate reservoir stimulations in the Tarim oil field, in northwest China. The phenomenon of fracture diversion was evident as the pumping pressure increased considerably after injecting the degradable fiber. The hydraulic fracturing treatment and production results showed substantial pressure responses and excellent hydrocarbon production. (C) 2015 Elsevier B.V. All rights reserved.
机译:载有纤维的流体系统已成功地应用于全球致密气和页岩气储层的定向压裂。尽管在文献中已经报道了许多成功的案例,但对纤维辅助分流压裂的力学机理缺乏深入的了解。因此,本文对纤维转向压裂技术的裂缝转移机理进行了系统的研究。使用真实的三轴应力模拟系统进行了一系列实验室实验。可降解纤维在真正的三轴应力条件下应用于大型天然露头样品(300毫米x 300毫米x 300毫米)。动态过滤实验测试了临时的堵塞能力,表明裂缝被纤维流体有效地堵塞了。测试和比较了与裂缝重新定向有关的多种因素,包括注入速率,裂缝宽度和水平主应力差。计算由纤维滤饼引起的附加压降,并将其用于定量分析对裂缝重新定向的影响。净压力增加是裂缝转移和形成裂缝网络的驱动力。这些结论被用来指导中国西北塔里木油田的碳酸盐岩储层增产。注入可降解纤维后,泵送压力显着增加,因此产生了裂缝转移现象。水力压裂处理和生产结果显示出显着的压力响应和出色的烃产量。 (C)2015 Elsevier B.V.保留所有权利。

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