Affiliation:
1. School of Engineering and Built Environment, Griffith University, Brisbane, QLD 4111, Australia
Abstract
In India, particularly within its Northeastern territories, landslides triggered by rainfall following dry periods are a major concern, consistently causing extensive damage to both life and infrastructure. This study focuses on mitigating their impact through preemptive measures, with an emphasis on analyzing slope stability to determine critical intervention points. The investigation includes experimental tests on soil samples to assess key parameters, such as soil matric suction and unconfined compressive strength, alongside an analysis of slope failures during the 2017 monsoon in Mizoram’s Lunglei district. Employing Soil-Water Characteristic Curves (SWCC) derived from ASTM D5298-10 standards and a microwave drying technique for preparing soil samples, the research evaluates the condition of the slopes before and after monsoonal rains. This study utilizes a blend of numerical modeling and empirical laboratory investigations to explore the factors contributing to slope instability. The findings underscore the necessity of advanced landslide warning systems, suggesting that a deeper understanding of rainfall-induced slope failures could significantly enhance disaster preparedness and reduce potential damages.
Reference61 articles.
1. Unsaturated Soil Mechanics in Rainfall-Induced Flow Landslides;Sorbino;Eng. Geol.,2013
2. Seepage and Slope Stability Modelling of Rainfall-Induced Slope Failures in Topographic Hollows;Acharya;Geomat. Nat. Hazards Risk,2014
3. The Assessment of Slope Stability along NH-22 in Rampur-Jhakri Area, Himachal Pradesh;Sarkar;J. Geol. Soc. India,2016
4. Stability Analysis of a Recurring Soil Slope Failure along NH-5, Himachal Himalaya, India;Singh;Nat. Hazards,2018
5. Barman, J., Biswas, B., and Das, J. (2022). Mizoram, the Capital of Landslide: A Review of Articles Published on Landslides in Mizoram, India, Springer.