Research of Prediction Method in Large Slope for Three Dimensional Object Deformation

Article Preview

Abstract:

Based on the mapping theoretical method, the deformation surface set model is established, which represents time series of slope 3D solid deformation. The phase in the series is deformation surface. Therefore, model set is dynamic deformation surface set of slope 3D solid deformation. Surface of deformation function reflects the distribution of slope rock mass deformation value in the special region, thus it can reveal the slope deformation law in different sections better. By engineering applied, the establishment of slope 3D deformed prediction model makes the behavior of slope rock mass deformation more direct, while makes it convenient for slope judgment of division and safety evaluation, so as to the decision basis for mine safety production and engineering control.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

337-342

Citation:

Online since:

November 2011

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2012 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Zhiyi Bo: Research on Prediction of Open Coal Pit Slope Deformation: [Doctoral Dissertation]. China University of Mining and Technology (Beijing). 2009 [2] M.A. Green: High Efficiency Silicon Solar Cells (Trans Tech Publications, Switzerland 1987). In Chinese

Google Scholar

[2] Runsheng Huang, Jie Huang: Chaos and Its Application. Wuhan: Wuhan University Press, 2005. In Chinese

Google Scholar

[3] Xinjian Shan, Hong Ye, Daofen Li, Guoguang Chen: Geological Science and Technology Information. 2004,9,23(3):109-112. In Chinese

Google Scholar

[4] Shiguo Sun: China Mining Magazine, 2006(10):71-73. In Chinese

Google Scholar

[5] Shiguo Sun: Control Technology for Slope Stability of Typical Dump. Mentallurgy Industry Press, January, 2011. In Chinese

Google Scholar

[6] Shiguo Sun: Deformation Law for Slope Rock Mass of Combined Excavation of Mines, Seismological Press, May, 2000. In Chinese

Google Scholar