Side slope full-life-cycle safety management method based on digital mapping
A technology of full life cycle and safety management, which is applied in the field of slope full life cycle safety management, can solve the problem of comprehensive and real-time grasp of the overall stability status, complex evolution law of slope stability, and constraints on the safety construction and safety of hydropower projects in Tibetan areas. Operation and other issues, to achieve the effect of improving the level of intelligent management and control, strengthening communication, and improving efficiency
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[0047] This example takes the Rumei Hydropower Station as an example. The Rumei Hydropower Station is located in the upper reaches of the Lancang River in the Tibet region of my country. The hard rock in the dam site area cuts deep into the valley, and the middle and upper parts of the high and steep bank slope and the shallow rock mass are affected by continuous stress release. It shows a strong relaxation phenomenon, coupled with the unique climatic conditions of the alpine valley, forming a broken loose rock mass and an unloaded rock mass. ) deformation and stability features become the focus of engineering attention. The safety of the fractured and loose rock mass slopes widely distributed in the dam site area and even the hub area of Rumei Hydropower Station has become an important factor restricting the success of the project. Traditional methods are no longer suitable for the safety monitoring and management of such large-scale fractured rock mass slopes during the cons...
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