The proposed Jinping first stage hydropower station is located on the middle reach of the Yalongjiang River, Sichuan Province, PR China. It consists of a double-curvature arch dam with a maximum height of 305 m, which will be the highest in the world. Cracks are well developed in the left bank slope of the Pusiluogou, the dam site of Jinping first stage hydropower station. Some cracks are even developed at the horizontal distance into rock face (in this paper, the term "horizontal depth" was used to describe the horizontal distance into face of the slope) beyond 200 m, and these cracks are here referred to as deep cracks. The distribution of these deep cracks is far beyond people's experiences in common unloading zones, so the mechanism of ...
Coal seam mining in the gully area easily causes ground cracks and even induces landslides, which en...
Coal seam mining in the gully area easily causes ground cracks and even induces landslides, which en...
AbstractThe four diversion tunnels at Jinping II hydropower station represent the deepest undergroun...
The aim of this study is to examine cracking and instability of the high and steep left bank slope w...
AbstractJinping I hydropower station is one of the most challenging projects in China due to its hig...
This paper presents a case history of the 205 m high intake slope at the Huangjinping (HJP) hyd...
Two rock topples with the opposite dip direction, observed in the Ribangliangzi hill and facing the ...
Red bed slopes in the southwest of China are associated with a grant number of geological hazards, s...
Slope deformation and failure are major challenges for hydropower station engineering. Taking the le...
This paper presents a typical 450 m high rock slope in a highly jointed and fractured rock mass at P...
Crack is one of the important factors affecting the engineering characteristics of expansive rock an...
AbstractThe Jinping I hydropower station is a huge water conservancy project consisting of the highe...
The Jinping I hydropower station is a huge water conservancy project consisting of the highest concr...
The high-steep rock slope stability is one of the key technologies in the construction of water cons...
The development law of mining cracks in shallow coal seams under gully topography was used as the re...
Coal seam mining in the gully area easily causes ground cracks and even induces landslides, which en...
Coal seam mining in the gully area easily causes ground cracks and even induces landslides, which en...
AbstractThe four diversion tunnels at Jinping II hydropower station represent the deepest undergroun...
The aim of this study is to examine cracking and instability of the high and steep left bank slope w...
AbstractJinping I hydropower station is one of the most challenging projects in China due to its hig...
This paper presents a case history of the 205 m high intake slope at the Huangjinping (HJP) hyd...
Two rock topples with the opposite dip direction, observed in the Ribangliangzi hill and facing the ...
Red bed slopes in the southwest of China are associated with a grant number of geological hazards, s...
Slope deformation and failure are major challenges for hydropower station engineering. Taking the le...
This paper presents a typical 450 m high rock slope in a highly jointed and fractured rock mass at P...
Crack is one of the important factors affecting the engineering characteristics of expansive rock an...
AbstractThe Jinping I hydropower station is a huge water conservancy project consisting of the highe...
The Jinping I hydropower station is a huge water conservancy project consisting of the highest concr...
The high-steep rock slope stability is one of the key technologies in the construction of water cons...
The development law of mining cracks in shallow coal seams under gully topography was used as the re...
Coal seam mining in the gully area easily causes ground cracks and even induces landslides, which en...
Coal seam mining in the gully area easily causes ground cracks and even induces landslides, which en...
AbstractThe four diversion tunnels at Jinping II hydropower station represent the deepest undergroun...