Study on Surface Movement and Deformation by Mining in Loess Gully Region

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Abstract:

Aims at the problem on surface subsidence calamity in loess gully region , applies on the best result of surface subsidence disaster by mining, basis on analysis prediction model of level surface and character of surface movement and deformation in gully region, and combines the character of landslide and slip accompanies hilly surface movement and deformation by mining, and establishes theory model of surface movement and deformation and determine model of the landslide may occur, it is further verified correctness and rationality by project, and It has some significance on hilly surface movement and deformation and protect the object of risk assessment.

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3005-3009

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February 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Xueyi Yu, Enjiang Zhang. Mining damage (second edition) [M] Beijing: Coal Industry Press, 2010. In Chinese.

Google Scholar

[2] National Coal Board. Coal pillar of the building, railway and main body of the book fairway leaving in the pressure of the coal mining regulations [M] Beijing: Coal Industry Press, (2000).

Google Scholar

[3] Xueyi Yu. Studying theory of displacement and deformation in the moutain areass under the influnce of underground exploitation[D], Kracow: AGH University of Science and Technol_ ogy, 1999. In Chinese.

Google Scholar

[4] Yi Luo. Us Longwall Mining and Subsidence REsearch[R]. West Virginia University. 2011. 06.

Google Scholar

[5] Shihai LI, Tianping LIU, Xiaoyu LIU. Analusis method for landslide stability [J]. Chinese Journal of Rock Mechanics and Engineering. 2009, 28(Sup p.2) : 3309~3325. In Chinese.

Google Scholar

[6] Bingchao Zhao, Xueyi Yu. Toward the surface caused by underground. DD245-DD246 segment of the natural gas pipeline across the Hengfa coal mine gob [R]. Xi'an University of Science and Technology. 2011. 11. In Chinese.

Google Scholar