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Fracture Segmentation Method Based on Contour Evolution and Gradient Direction Consistency in Sequence of Coal Rock CT Images

机译:基于轮廓演化和梯度方向一致性的裂缝分割方法煤岩CT图像序列

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The coal rock exhibits obvious heterogeneity and anisotropy after a long-term geological evolution in nature. Therefore, the coal rock CT (computed tomography) image shows uneven grey scale, low contrast, and the fractures with weak boundaries. The accurate segmentation of the coal rock fracture networks is challenging. In this paper, a segmentation method of fractures based on contour evolution and gradient direction consistency is proposed to accurately segment the fracture networks in the sequence of coal rock CT images. According to the contour variation rule of the fractures in the discrete 3D (three dimensional) space formed by the sequence of CT images, the fracture contour evolution model (FCEM) is constructed and the preliminary segmentation results of fractures are obtained from FCEM. A 3D adaptive median filtering (3DAMF) and a 3D bilateral filtering (3DBF) are proposed. The high density miscellaneous point noises in the coal rock CT images are filtered by the 3DAMF. And the boundaries of fractures are enhanced by 3DBF. According to the similarity of the preliminary segmentation results of fractures and the real contours of fractures, the preliminary segmentation results of fractures are optimized based on the gradient direction consistency model (GDCM) proposed in this paper to obtain the accurate boundaries of fractures. The fracture segmentation method proposed in this paper can obtain accurate boundaries of fractures with weak boundaries, and the experimental results show that the segmentation efficiency for sequence is high and adaptability is strong.
机译:在大自然中长期地质演变之后,煤炭岩石表现出明显的异质性和各向异性。因此,煤岩CT(计算机断层扫描)图像显示不均匀的灰度,低对比度,以及具有薄边界的骨折。煤岩骨折网络的准确分割是具有挑战性的。在本文中,提出了一种基于轮廓展开和梯度方向一致性的裂缝的分段方法,以精确地在煤岩CT图像序列中分段裂缝网络。根据CT图像序列形成的离散3D(三维)空间中裂缝的轮廓变化规则,构建断裂轮廓演化模型(FCEM),并且从FCEM获得裂缝的初步分段结果。提出了一种3D自适应中值滤波(3DAMF)和3D双边滤波(3DBF)。煤岩CT图像中的高密度杂项点噪声由3DAMF过滤。 3DBF增强了骨折的界限。根据裂缝的初步分割结果的相似性和裂缝的实际轮廓,基于本文提出的梯度方向一致性模型(GDCM)优化了骨折的初步分割结果,以获得裂缝的准确边界。本文提出的裂缝分割方法可以获得具有弱边界的骨折的准确边界,实验结果表明,序列的分割效率高,适应性强劲。

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