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Characteristics of hydraulic fracture surface based on 3D scanning technology

机译:基于3D扫描技术的水力压裂表面特征

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摘要

The surface characteristics of fractured specimens are important in hydraulic fracturing laboratory experiments. In this paper, we present a three-dimensional (3D) scanning device assembled to study these surface characteristics. Cube-shaped rock specimens were produced in the laboratory and subjected to triaxial loading until the specimen split in two in a hydraulic fracturing experiment. Each fractured specimen was placed on a rotating platform and scanned to produce 3D superficial coordinates of the surface of the fractured specimen. The scanned data were processed to produce high-precision digital images of the fractured model, a surface contour map and accurate values of the superficial area and specimen volume. The images produced by processing the 3D scanner data provided detailed information on the morphology of the fractured surface and mechanism of fracture propagation. High-precision 3D mapping of the fractured surfaces is essential for quantitative analysis of fractured specimens. The 3D scanning technology presented here is an important tool for the study of fracture characteristics in hydraulic fracturing experiments.
机译:断裂试样的表面特性在水力压裂实验室实验中很重要。在本文中,我们提出了一种三维(3D)扫描装置,用于研究这些表面特征。在实验室中生产立方体形的岩石标本,并进行三轴加载,直到在水力压裂实验中将标本一分为二。将每个断裂的样品放置在旋转平台上并进行扫描以产生断裂样品表面的3D表面坐标。扫描的数据经过处理后可生成断裂模型的高精度数字图像,表面轮廓图以及表层面积和样品体积的准确值。通过处理3D扫描仪数据生成的图像提供了有关断裂表面的形态和断裂传播机理的详细信息。断裂表面的高精度3D映射对于断裂样品的定量分析至关重要。此处介绍的3D扫描技术是研究水力压裂实验中裂缝特征的重要工具。

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