基于超声钻孔成像仪的主动故障自动断口几何特征识别算法

IF 2.1 4区 工程技术 Q3 ENERGY & FUELS
Hamid Heydari Gholanlo, M. Nikkhah
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引用次数: 0

摘要

一个地区的地下应力状态可能会受到干扰,特别是适应活跃的剪切带。在非均匀应力场中开挖的圆孔中出现的钻孔突出可以通过跟踪来识别活动剪切带。本研究旨在开发破口形态分析(BMA)算法,以利用井筒超声成像工具提供的破口方位、宽度和破裂强度(延伸深度)等有价值的属性。在目前的研究中,对提取的方位角信息进行测量,以检测沿井的活动剪切带。为了验证算法,收集了位于伊朗双下陷Ahvaz背斜的5口井的超声波数据。该算法生成的阿瓦士背斜BOs方位角的多井对比表明,深直井中可能存在西南-东北方向的剪切面。同样,阿瓦士背斜的地震反射剖面也显示出中白垩世沉积物中滑脱断裂系统的轨迹。这一发现证实了原始超声传播时间比其他井眼图像数据(如超声振幅的静态和动态图像)更适用于BO表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Active Fault Detection by an Automatic Breakout Geometry Characterization Algorithm from Ultrasonic Borehole Imager
An underground stress state might be disturbed in an area, particularly adjusting to an active shear zone. Borehole breakouts (BOs) that appeared in a circular hole excavated in an inhomogeneous stress field might be tracked to identify the active shear zone. The present study aims to develop the breakout morphology analysis (BMA) algorithm to exploit the valuable attributes of borehole BOs including azimuth, width, and intensity (depth of elongation) of failure from wellbore ultrasonic imaging tools. In the current study, the extracted azimuthal information was surveyed to detect the active shear zone along the well. Ultrasonic data from five wells drilled in the doubly plunging Ahvaz Anticline located in Iran were collected for the purpose of algorithm verification. The multiwell correlation of the BOs’ azimuth generated by the algorithm in the Ahvaz Anticline suggests a shear plan dipping southwest-northeast direction is possibly active in the deep vertical wells. Similarly, the seismic reflection profile of the Ahvaz Anticline shows a track of detachment faulting system in the mid-Cretaceous sediments. The finding confirms that the raw ultrasonic traveling time is more applicable than other borehole image data, such as static and dynamic images of ultrasonic amplitude, in BO characterization.
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来源期刊
CiteScore
5.30
自引率
0.00%
发文量
68
审稿时长
12 months
期刊介绍: Covers the application of a wide range of topics, including reservoir characterization, geology and geophysics, core analysis, well logging, well testing, reservoir management, enhanced oil recovery, fluid mechanics, performance prediction, reservoir simulation, digital energy, uncertainty/risk assessment, information management, resource and reserve evaluation, portfolio/asset management, project valuation, and petroleum economics.
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