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A method for Estimating three-dimensional Distribution of microcrack orientations in rock

机译:一种估算岩石中微裂纹取向三维分布的方法

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Physical properties of rock, such as strength, elasticwave velocities and permeability, depend largely on microcrackgeometry. In particular, anisotropy of these properties is intimatelyrelated to the distribution of microcrack orientations. In this paper,an estimating method for three-dimensional distribution ofmicrocrack orientations in rock is introduced by using theassociated Legendre function. If a microcrack is expressed by apenny shaped disk, the distributions of crack orientations anddiameters are expressed using probability density functionsrespectively and the intersection of cracks with a plane isgeometrically modeled. Based on the model, the density functionof three-dimensional orientations is characterized by observingtraces of cracks, which have two-dimensional orientations, onsome surfaces of a rock.A microscopic examination using a digital microscope underultraviolet light is employed for visualization of microcracks onInada granite filled with methylmetaacrylate combined withfluorescent paint. After a few steps of image processing, lineelements on the digital images are automatically extracted as tracesof cracks using the Segment Tracing Algorithm that is a lineamentidentification method. Once line elements are obtained, it is easy tocharacterized their two-dimensional orientations. An observationequation is constructed by using these two-dimensionalorientations on three orthogonal surfaces of the granite, and thenthe probability density function of three-dimensional microcrackorientations is obtained by solving the equation. P-wave velocitiesin the Inada granite are also measured in the study. Anisotropy ofthe P-wave velocity is in harmony with the distribution ofmicrocrack orientations. The orientation of the rift plane of thegranite approximately agrees with the primary orientation ofmicrocracks, while there is no obvious difference between grainand hardway planes.
机译:岩石的物理性质,如强度,elasticwave速度和透气性,在很大程度上取决于microcrackgeometry。具体地,这些特性的各向异性intimatelyrelated到微裂纹姿势的分布。在本文中,在岩石的三维分布ofmicrocrack取向的估计方法,通过使用theassociated勒让德函数引入的。如果微裂纹是由apenny成形盘表示,裂缝取向anddiameters的分布是使用functionsrespectively概率密度和isgeometrically建模的平面裂纹的交叉点表示。基于该模型,functionof三维取向的密度的特征在于裂缝observingtraces,其具有二维的方向,利用数码显微镜被用于微裂纹onInada花岗岩填充的可视化underultraviolet光的rock.A镜检onsome表面与methylmetaacrylate结合withfluorescent漆。后图像处理的几个步骤中,在数字图像lineelements被自动提取为使用段跟踪算法是一个lineamentidentification方法tracesof裂纹。一旦获得线元件,很容易tocharacterized其二维取向。一个observationequation是通过使用在花岗岩三个正交的表面这两个-dimensionalorientations构造,并且通过解方程获得的三维microcrackorientations的thenthe概率密度函数。 P波velocitiesin的稻田花岗岩也在研究中测量的。各向异性国税发P波速度与所述分配ofmicrocrack取向和谐。的thegranite裂谷平面的方向大致与所述主取向ofmicrocracks同意,同时有grainand在Hardway平面之间无明显差异。

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