Numerical-simulation-based Landslide Warning System and Its Application | |
Feng C(冯春)1,2; Li SH(李世海)1,2; Liu TP(刘天苹)1; Wang XQ(王心泉)1,2; Zhu XG(朱心广)1,2 | |
Source Publication | IOP Conference Series: Earth and Environmental Science |
2021-10-01 | |
Pages | IOP:EES_861_6_062025 |
Conference Name | 11th Conference of Asian Rock Mechanics Society, ARMS 2021 |
Conference Date | 21 October 2021- 25 October 2021 |
Conference Place | Beijing |
Abstract | Landslide early warning is a systematic project involving multidisciplinary integration, i.e. geology, mechanics, engineering, monitoring technology, and information technology. When conducting landslide studies, due to the limitation of failure theory of geological body, landslide warning system is purely based on monitoring data nowadays, so it is difficult to integrate interdisciplinary techniques. A trigger condition based prediction theory and disaster stage judgment approach are introduced, with which the landslide time prediction is converted to the disaster stage judgment. The definition and significance of fracture degree is presented, by which the disaster stage judgment is convert to inner fracture state analysis. At last, the numerical-simulation-based landslide warning system is discussed in detail. This system contains four parts, namely parameter acquisition part, disaster kernel analysis system, current state back analysis part, and landslide reliability evaluation part, respectively. In the first part, the essential parameters and its acquisition method is presented, and then the necessity and advantages of dimensional analysis is discussed. In the second part, the new numerical method named continuous discontinuous element method (CDEM) is introduced, and main features, i.e. Lagrange equation, strain strength distribution criteria, element crack strategy, and indented point & indented edge contact model is introduced. In third part, the inverse analysis method of current parameters of geological body based on monitoring data and numerical simulation is discussed. In the fourth part, the reliability evaluation steps are presented in detail. Finally, the sliding occurrence probability of Liangshuijing landslide in Chongqing, China is discussed, which demonstrated to show the precision and rationality of the proposed landslide warning system. |
Language | 英语 |
Citation statistics | |
Document Type | 会议论文 |
Identifier | http://dspace.imech.ac.cn/handle/311007/87682 |
Collection | 流固耦合系统力学重点实验室 |
Affiliation | 1.Institute of Mechanics, Chinese Academy of Sciences, Beijing, 100190, China 2.School of Engineering Science, University of Chinese Academy of Sciences, Beijing, 100049, China |
Recommended Citation GB/T 7714 | Feng C,Li SH,Liu TP,et al. Numerical-simulation-based Landslide Warning System and Its Application[C]IOP Conference Series: Earth and Environmental Science,2021:IOP:EES_861_6_062025. |
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