戈斯福德砂岩钻孔破裂形成的实验研究

IF 7 1区 工程技术 Q1 ENGINEERING, GEOLOGICAL
Zizhuo Xiang , Guangyao Si , Joung Oh , Ismet Canbulat , Charlie C. Li
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引用次数: 0

摘要

本研究通过在立方体戈斯福德砂岩上进行真实三轴实验室实验,对原位钻孔破裂的形成进行了研究。在不同的应力条件下,采用两种方法进行了四个系列的测试:PD法(加载到预钻孔的试样上)和PS法(加载到完好的试样上,然后进行钻孔)。钻孔照相机的观察结果表明,在 PD 条件下,破损区内残留大量岩石碎屑,而在 PS 试验中则观察到明显的 V 形缺口。根据三维扫描获得的点云数据,提取了突破的几何形状。两种测试方法下的突破宽度和归一化深度都与最大水平应力呈正相关,而与最小水平应力呈负相关。与 PD 试验相比,PS 试验往往会产生更宽更深的突破。在各种应力条件下,破裂宽度的差异基本一致,约为 10° - 15°,而归一化破裂深度的变化则随着井眼破坏的严重程度而增加。这些差异被认为是由于开挖卸载引起的强度减弱以及循环流体和钻井振动对岩石碎屑的清除造成的。研究结果表明,应力路径对开口周围的岩石破坏行为具有关键影响,建议采用 PS 试验来研究钻孔破裂现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental investigation of borehole breakout formation in Gosford sandstone

This study investigates the in-situ borehole breakout formation using true-triaxial laboratory experiments on cubic Gosford sandstone. Four series of tests have been conducted under varying stress conditions following two approaches: PD method (loading onto specimens with pre-drilled boreholes) and PS method (loading onto intact specimens and then conducting drilling). Borehole camera observations show that a large amount of rock debris remains within the breakout zone under the PD conditions, while clear V-shaped notches are observed in the PS tests. The breakout geometries are extracted based on point cloud data obtained from 3D scanning. Both breakout width and normalised depth under both testing approaches exhibit positive correlations with the maximum horizontal stress while decreasing with minimum horizontal stress. The PS tests tend to yield wider and deeper breakouts compared to the PD tests. The difference in breakout width is generally consistent across various stress conditions at approximately 10° – 15°, whereas the variation in the normalised breakout depth increases with the severity of the borehole failure. The discrepancies are believed to be attributed to the excavation unloading induced strength-weakening and removal of rock debris by circulating fluid and drilling vibration. The outcomes of this study demonstrate that the stress path has critical impacts on the rock failure behaviours around openings, and the PS tests are suggested for investigating the borehole breakout phenomenon.

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来源期刊
CiteScore
14.00
自引率
5.60%
发文量
196
审稿时长
18 weeks
期刊介绍: The International Journal of Rock Mechanics and Mining Sciences focuses on original research, new developments, site measurements, and case studies within the fields of rock mechanics and rock engineering. Serving as an international platform, it showcases high-quality papers addressing rock mechanics and the application of its principles and techniques in mining and civil engineering projects situated on or within rock masses. These projects encompass a wide range, including slopes, open-pit mines, quarries, shafts, tunnels, caverns, underground mines, metro systems, dams, hydro-electric stations, geothermal energy, petroleum engineering, and radioactive waste disposal. The journal welcomes submissions on various topics, with particular interest in theoretical advancements, analytical and numerical methods, rock testing, site investigation, and case studies.
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