Shale hydraulic fracture morphology and inter-well interference rule under multi-wellbore test

IF 5.8 4区 工程技术 Q1 MECHANICS
Yulin Ma, Yupeng Du, Dandan Lu
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引用次数: 0

Abstract

This study conducted a series of true triaxial hydraulic fracturing experiments on Longmaxi Formation shale. We investigated the interaction between internal factors and external factors on the inter-well interference of 400 mm cubic porous specimens. During dual wellbore fracturing at different formations, forming inter-well interference through secondary hydraulic fractures lead to a lower interference intensity and larger stimulated rock area. When adopting a three-layer well layout during three-wellbore fracturing, the vertical distance between the wells is shortened, activating more bedding planes. Regardless of a horizontal well placement with two wellbores or a three-dimensional two-layer well placement with three wellbores, increasing the vertical stress leads to more potent inter-well interference. There is no absolute positive correlation between the stimulated rock area and inter-well interference. It can be influenced by the presence of natural fractures within the formation that can even lead to a reduction in the stimulated area. When the well placement changes from two horizontal wellbores to three-dimensional two-layer sites with three wellbores and the vertical stress increases, the inter-well interference becomes stronger, but the stimulated rock area only increases by 22.6%. These findings provide crucial guidance for the hydraulic fracturing design of shale reservoirs.
多井眼试验下的页岩水力压裂形态和井间干扰规律
本研究对龙马溪地层页岩进行了一系列真三轴水力压裂实验。我们研究了内部因素和外部因素对 400 毫米立方多孔试样井间干涉的相互作用。在不同地层的双井筒压裂过程中,通过次生水力裂缝形成的井间干涉会导致较低的干涉强度和较大的激发岩石面积。在三井筒压裂过程中采用三层井布局时,井间垂直距离缩短,可激活更多的层理。无论是两口井筒的水平井布局,还是三口井筒的三维两层井布局,垂直应力的增加都会导致更强的井间干扰。受刺激岩石面积与井间干扰之间没有绝对的正相关关系。地层中存在的天然裂缝会对其产生影响,甚至会导致受刺激面积减小。当油井布置从两口水平井井筒变为三口井井筒的三维两层井场且垂直应力增加时,井间干扰会变得更强,但受激岩石面积仅增加 22.6%。这些发现为页岩储层的水力压裂设计提供了重要指导。
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来源期刊
Applied Rheology
Applied Rheology 物理-力学
CiteScore
3.00
自引率
5.60%
发文量
7
审稿时长
>12 weeks
期刊介绍: Applied Rheology is a peer-reviewed, open access, electronic journal devoted to the publication in the field of applied rheology. The journal provides the readers with free, instant, and permanent access to all content worldwide; and the authors with extensive promotion of published articles, long-time preservation, language-correction services, no space constraints and immediate publication.
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