Chen Hongyu, Zou Jianhua, Wang Xinghua, Lv Peng, Tan Zefu, Cheng Longfei, Wei Qiang
Sustainable Development Center of the Three Gorges Reservoir Area, Chongqing Three Gorges University, Chongqing, 404020, China.
School of Civil Engineering, Chongqing Three Gorges University, Chongqing, 404020, China.
Sci Rep. 2023 Aug 9;13(1):12926. doi: 10.1038/s41598-023-40186-6.
Landslides are the most widely distributed geological hazards in the Three Gorges Reservoir Area (TGRA). Understanding the deformation mechanism and evolution of landslides is of great significance for their prevention and control. In this study, we focused on the Zhangjiacitang landslide, a typical bank landslide in the TGRA. We analyzed the relationship between landslide deformation and water level fluctuations and rainfall, based on accumulated displacement monitoring data, to clarify their triggering factors and deformation mechanism. The results show that the Zhangjiacitang landslide is a large-scale accumulation landslide. Under the influence of cyclic water level fluctuations and periodic rainfall, the accumulated displacement-time curve shows a "stepped" characteristic. Heavy rainfall emerged as the primary factor influencing the deformation of the Zhangjiacitang landslide, leading to substantial deformation throughout different periods. The deformation of the landslide exhibited a positive correlation with the intensity of rainfall. In contrast, the impact of water level changes on the landslide deformation was more intricate. A rapid water level drop (> 0.3 m/d) tended to intensify the landslide deformation, while the slow water level drop period (< 0.3 m/d) did not exhibit such an effect. This study emphasizes the need for closely monitoring the landslide status during heavy rainfall periods and rapid water level decline periods. The findings of this study provide a certain reference for landslide monitoring, early warning, prevention and control in the TGRA.
滑坡是三峡库区分布最广泛的地质灾害。了解滑坡的变形机制和演化对其防治具有重要意义。本研究聚焦于三峡库区典型的岸坡滑坡——张家祠堂滑坡。基于累积位移监测数据,分析了滑坡变形与水位涨落及降雨之间的关系,以阐明其触发因素和变形机制。结果表明,张家祠堂滑坡是一个大型堆积滑坡。在周期性水位涨落和周期性降雨的影响下,累积位移-时间曲线呈现出“阶梯状”特征。强降雨成为影响张家祠堂滑坡变形的主要因素,导致不同时期均出现大幅变形。滑坡变形与降雨强度呈正相关。相比之下,水位变化对滑坡变形的影响更为复杂。水位快速下降(>0.3 m/d)往往会加剧滑坡变形,而水位缓慢下降阶段(<0.3 m/d)则未表现出这种效应。本研究强调在强降雨期和水位快速下降期需密切监测滑坡状态。研究结果为三峡库区滑坡监测、预警、防治提供了一定参考。