Probability-integral-method based surface movement deformation predication method for any mining working faces

A technology of probability integral method and surface movement, which is applied in the field of prediction of surface movement and deformation of any mining face, can solve problems such as difficult calculations in irregular mining areas, difficult calculations, regular graphics or convex graphics, etc., to achieve reduction Effects of economic loss and environmental damage, improvement of prediction accuracy, and fast calculation speed

Active Publication Date: 2017-02-22
HENAN POLYTECHNIC UNIV
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Problems solved by technology

In the actual application process, since the surface movement and deformation at any point is expected to be three-dimensional, double integration is required, which is convenient for regular rectangular or approximately rectangular areas, but difficult to calculate for irregular mining areas, especially those with concave shapes. mining area
In response to this problem, different scholars have proposed mining subsidence prediction systems written in different computer languages. Some system calculation methods can only predict mining areas with regular graphics or convex shapes; other systems use trigonometric integrals to calculate mining areas with arbitrary shapes. Surface movement and deformation (dividing the mining area into triangles and adopting the method of direct integration) has a good effect, but it is difficult to calculate when the mining area is an extremely irregular concave figure due to the large number of coal pillars left

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  • Probability-integral-method based surface movement deformation predication method for any mining working faces
  • Probability-integral-method based surface movement deformation predication method for any mining working faces
  • Probability-integral-method based surface movement deformation predication method for any mining working faces

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Embodiment Construction

[0030] The technical solution of the present invention will be described in further detail below in conjunction with the accompanying drawings and specific embodiments.

[0031] Such as figure 1 As shown, there is a concave point in the mining area, the coal seam dip angle α, and the strike azimuth angle Will figure 1 After being processed by the vector integration method, it is transformed into figure 2 , figure 2 Dimples no longer exist in . Will figure 2 The medium mining area is converted to image 3 shown, and divided into image 3 There are several small rectangles shown, calculate the surface movement deformation value, and then use inverse transformation to convert the coordinates of all calculated points. The above steps are realized by programming in python language, and the final calculation results are realized through the drawing library of python language to realize the drawing functions of two-dimensional, three-dimensional and cloud images.

[0032]...

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Abstract

The invention discloses a probability-integral-method based surface movement deformation predication method for any mining working faces. According to method, a vector product method is adopted for processing mining areas in any shapes, each processed mining area is divided into a plurality of mining areas similar to rectangles along the strike to perform calculation, surface movement deformation values for the whole mining areas are calculated through accumulation, and predication of the surface movement deformation values of the mining areas in any shapes, drawing of two-dimensional, three-dimensional and cloud pictures and output of calculation data files are realized through python language programming. The innovative surface movement deformation predication method for the any mining working faces is implemented with the assistance of computer technology. The surface movement deformation predication method has the advantages that calculation of the surface movement deformation values of the mining areas with different shapes is realized; surface movement deformation predication accuracy is improved; a reliable basis is provided for prevention and treatment of damage to surface buildings and surfaces, and economic loss and environment damage are reduced; the method is convenient to use, rapid in calculation speed and the like.

Description

technical field [0001] The invention relates to a method for predicting ground movement and deformation, in particular to a method for predicting ground movement and deformation of an arbitrary mining face based on a probability integral method. Background technique [0002] Probability integral method is a commonly used method for predicting surface movement and deformation in China. It is based on random medium theory. Probability integral is used to express the prediction formula of surface movement and deformation caused by micro-unit mining, so that the superposition principle is used to calculate the surface movement caused by the entire mining. and deformation. In the actual application process, since the surface movement and deformation at any point is expected to be three-dimensional, double integration is required, which is convenient for regular rectangular or approximately rectangular areas, but difficult to calculate for irregular mining areas, especially those ...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06F17/50
CPCG06F30/20
Inventor 赵忠明施天威
Owner HENAN POLYTECHNIC UNIV
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