Application of Automatic Monitoring System in High Slopes of Power Engineering
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Abstract
The stability of high slopes is restricted by the basic properties of rock and soil masses, featuring variability and heterogeneity. The hydrogeological conditions of high slopes are relatively complex, making them prone to geological hazards such as slope collapse, landslide, dislocation, and inclination during the construction and operation phases. These hazards may lead to severe consequences, including damage to power transmission and transformation equipment, even casualties, and significant economic losses. To enhance the safety of high slope engineering during construction and operation, this paper takes the high slope of a power project in Fujian as the research object, adopting an automatic monitoring system to conduct real-time deformation monitoring on the high slope. The monitoring platform performs real-time analysis of abnormal data and issues safety early warnings, and corresponding measures are taken in response to early warning situations. This practice has prevented engineering accidents and ensured the safety of the construction site and the surrounding environment. Meanwhile, the system has realized data sharing with the Smart Construction Site System of State Grid Corporation of China, providing strong dynamic support for the on-site work of all participating units.
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