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Slope fractured rock mass information acquisition method based on image recognition

An image recognition and acquisition method technology, applied in image enhancement, image analysis, image data processing, etc., can solve the problem of inability to effectively identify the boundaries of fragmented particles, unable to effectively evaluate the quality of fragmented rock mass, and difficult to obtain slope fragmented rock mass Information and other issues

Active Publication Date: 2019-12-13
CHENGDU UNIVERSITY OF TECHNOLOGY
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Problems solved by technology

[0004] Aiming at the above-mentioned deficiencies in the prior art, a method for obtaining information on slope fragmented rock mass based on image recognition provided by the present invention solves the difficulty in obtaining slope fragmented rock mass information in areas with inconvenient traffic such as mountains and valleys in the prior art, And the problem that the boundary of the broken particles cannot be effectively identified, and the problem that the shear strength test conducted indoors after sampling cannot effectively evaluate the quality of the broken rock mass

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  • Slope fractured rock mass information acquisition method based on image recognition
  • Slope fractured rock mass information acquisition method based on image recognition
  • Slope fractured rock mass information acquisition method based on image recognition

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Embodiment

[0088] Based on more than 10 landslide fractured rock mass examples in the alpine and canyon areas, the present invention proposes to vectorize the particles in the images with the help of more than 1,000 fractured rock mass images collected by high-definition digital cameras, and extract the geometric feature information of the particles in the images to reflect fragmentation The fragmentation index of the fractured rock mass, the fractal dimension of the fractured rock mass, the curvature coefficient of the particle distribution in the image, and the shear strength information of the fractured rock mass can be calculated to quickly evaluate the fragmentation Rock mass quality, the present invention effectively solves the problems in the prior art that it is difficult to obtain slope fragmented rock mass information in areas with inconvenient transportation such as mountains and valleys, and the problem that the boundary of fragmented particles cannot be effectively identified....

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Abstract

The invention provides a slope fractured rock mass information acquisition method based on image recognition. The method is based on landslide fractured rock mass examples in alpine and gorge areas. Aplurality of fractured rock mass images are acquired by a high-definition digital camera, vectorization is carried out on particles in an image, particle geometrical parameters, fragmentation lumpiness indexes, block fractal dimensions and curvature coefficients of particle distribution are calculated and extracted, geometrical characteristic information and development distribution rule information of fragmented rock mass particles are obtained, in-situ rock mass shear strength information is estimated, and therefore the fragmented rock mass quality is rapidly evaluated. The method effectively solves the problems that in the prior art, slope fractured rock mass information is not easy to obtain in areas with traffic inconvenience such as alpine and canyons, and the quality of the fractured rock mass cannot be effectively evaluated.

Description

technical field [0001] The invention belongs to the technical field of rock mass information acquisition, and in particular relates to an image recognition-based method for acquiring slope fragmented rock mass information. Background technique [0002] In the structurally active alpine and canyon areas such as the Qinghai-Tibet Plateau in my country, experienced complex orogeny processes such as lateral shrinkage, vertical thickening, and uplift to form mountains, developed multi-level, multi-stage, and multi-type superimposed structural deformations, resulting in rock masses inside the slope In addition, strong earthquakes occur frequently in these areas, for example, there have been more than 30 strong earthquakes of magnitude 7 or above in the past century, which promotes further fragmentation of the rock mass of the slope and greatly reduces the stability of the slope in this area. [0003] Although new technologies such as ground radar and 3D laser scanning continue to d...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06T7/00G06T7/13G06T3/40G01N21/84
CPCG01N21/84G06T3/4038G06T7/0002G06T7/13G06T2207/30184
Inventor 崔圣华杨晴雯裴向军吴昊宇谭洵
Owner CHENGDU UNIVERSITY OF TECHNOLOGY
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