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Towards a rapid assessment of highway slope disasters by using multidisciplinary techniques
Authors:Weng  Meng-Chia  Lin  Cheng-Han  Shiu  Wen-Jie  Chao  Wei-An  Chiu  Chia-Chi  Lee  Ching-Fang  Huang  Wei-Kai  Yang  Che-Ming
Institution:1.Department of Civil Engineering, National Yang Ming Chiao Tung University, Hsinchu, 30010, Taiwan
;;2.Department of Civil Engineering, National Taiwan University, Taipei, 10617, Taiwan
;;3.Sinotech Engineering Consultants Inc, Taipei, 114065, Taiwan
;;4.Department of Materials and Mineral Resources Engineering, National Taipei University of Technology, Taipei, 10608, Taiwan
;;5.Department of Civil and Disaster Prevention Engineering, National United University, Miaoli, 36063, Taiwan
;
Abstract:

Mega-earthquakes and extreme climate events accompanied by intrinsic fragile geology lead to numerous landslides along mountain highways in Taiwan, causing enormous life and economic losses. In this study, a system for rapid slope disaster information integration and assessment is proposed with the aim of providing information on landslide occurrence, failure mechanisms, and subsequent landslide-affected areas to the highway authority rapidly. The functionality of the proposed system is deployed into three units: (1) geohazard rapid report (GeoPORT I), (2) multidisciplinary geological survey report (GeoPORT II), and (3) site-specific landslide simulation report (GeoPORT III). After landslide occurrence, the seismology-based monitoring network rapidly provides the initial slope disaster information, including preliminary location, event magnitude, earthquake activity, and source dynamics, within an hour. Within 3 days of the landslide, a multidisciplinary geological survey is conducted to collect high-precision topographical, geological, and remote-sensing data to determine the possible failure mechanism. After integrating the aforementioned information, a full-scale three-dimensional landslide simulation based on the discrete element method is performed within 10 days to reveal the failure process and to identify the areas potentially affected by subsequent disasters through scenario modeling. Overall, the proposed system can promptly provide comprehensive and objective information to relevant authorities after the event occurrence for hazard assessment. The proposed system was validated using a landslide event in the Central Cross-Island Highway of Taiwan.

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