Effects of Fracture Seepage on the Stability of Landslide during Reservoir Water Level Fluctuation


Autoria(s): 樊红光; 刘青泉; 安翼
Data(s)

2010

Resumo

The hydraulic conductivity function of fractures is a key scientific question to describe and reveal the process and the role of water seepage reasonably. In this paper, the generation technology of random fracture network and the latest numerical computation method for equivalent permeability tensor of fracture network are applied to analyze the landslide located at Wangjiayuanzi in Wanzhou District of Chongqing by simulating the changes of the seepage field caused by the running of the Three Gorges Reservoir. The influences of the fracture seepage on the seepage field and stability of the landslide were discussed with emphasis. The results show that the fractures existing in the soil increase the permeability coefficient of the landslide body and reduce the delay time of the underground water level in the landslide which fluctuates relative to the water level of reservoir,that causes the safe coefficient of the slope changes more gently than that of the same slope without fractures. It means, if only water level fluctuating condition is concerned, the fractures existing in the soil plays a positive role to the stability of slopes.

This research was supported by the National Natural Science Foundation of China (Grant No. 10825211, 10932012)

Identificador

http://dspace.imech.ac.cn/handle/311007/43263

http://www.irgrid.ac.cn/handle/1471x/124853

Idioma(s)

英语

Fonte

Disaster Advances.2010,3(4):306-308

Palavras-Chave #交叉与边缘领域的力学::环境流体力学 #fracture seepage #random fracture network #equivalent permeability tensor #stability of landslide #reservoir water level fluctuation
Tipo

期刊论文