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首页> 外文期刊>International journal of geomechanics >Multiple Fracture Growth in Modified Zipper Fracturing
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Multiple Fracture Growth in Modified Zipper Fracturing

机译:改性拉链压裂的多重骨折生长

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摘要

Operational parameters, such as multiple-cluster and well spacing, flow rates, and injection time, play a vital role in the deviation and growth of multiple-cluster hydraulic fractures during the implementation of modified zipper fracturing technology. Fundamental analysis of the dynamic zipper fracture growth because of changing flow rates, well spacing, and injection time does not appear to have been studied in the literature, although it is of critical importance for fracturing optimization. In this study, a fully coupled two-dimensional (2D) extended finite-element method (XFEM)-cohesive zone model (CZM) in combination with a phantom-node method (CPNM) was used in ABAQUS to investigate the initiation and propagation of multiple hydraulic fractures with 10 injection clusters that are distributed in two horizontal boreholes. This study aims to assist fracturing design to achieve minimal deviation in multiple fracture propagation and create deeper and much wider fractures between two horizontal boreholes of a modified zipper fracture (MZF) completion pattern. The growth of a hydraulic fracture in an XFEM region were verified by Khristianovic-Geertsma-de Klerk (KGD) zero toughness solution and good agreement with a negligible error of 2.5% was obtained. A series of simulation scenarios was carried out with various flow rates and three well spacings of 40, 60, and 80 m, over a long injection period to identify the optimum injection time in which a fracture grows straight with minimal deviation. The results show that to create smooth and deeper multiple hydraulic fractures in zipper fracturing, an increase in the flow rate is preferred, but the duration of the injection period should be optimized. The results of this study could be used to better address operational difficulties, such as multiple-fracture crossing and closure that is associated with unfavorable injection times, well spacing, and flow rates in MZF operations.
机译:操作参数,例如多簇和井间距,流速和喷射时间,在改进的拉链压裂技术实施过程中的多簇液压骨折的偏差和生长中起着至关重要的作用。由于改变流速,井间距和喷射时间,因此在文献中研究了动态拉链骨折生长的根本分析,但在文献中似乎没有对压裂优化至关重要。在该研究中,在ABAQUS中使用了完全耦合的二维(2D)扩展有限元方法(XFEM) - 膨胀区模型(CZM)与幻影节点方法(CPNM)组合用于研究启动和传播多个液压骨折,10个注射簇,分布在两个水平孔中。本研究旨在帮助压裂设计在多重断裂繁殖中实现最小的偏差,并在改性拉链裂缝(MZF)完成图案的两个水平钻孔之间产生更深层次的骨折。通过Khristianovic-Geertsma-de Klerk(KGD)零韧性解决方案验证了XFEM区域中的液压骨折的生长,并且良好的一致性与可忽略不计的误差得到。通过各种流速和40,60和80μm的三个井间距来进行一系列模拟场景,在长时间注射时期,以识别裂缝直接偏差的最佳喷射时间。结果表明,为了在拉链压裂中产生光滑和更深的多个液压骨折,流速的增加是优选的,但应优化喷射期的持续时间。本研究的结果可用于更好地解决操作困难,例如与不利的注射时间,井间距和MZF操作中的流速相关的多重断裂交叉和闭合。

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