A Non-Stationary Framework for Landslide Hazard Assessment Under the Extreme Rainfall Condition

被引:0
作者
Shamsudeen, Shamla Dilama [1 ,2 ]
Sankaran, Adarsh [1 ,2 ]
Sajith, Ardra [1 ,2 ]
Stanzin, Tsewang [1 ,2 ]
Dev, Deekshitha [1 ,2 ]
Samad, Muhammed Siddik Abdul [1 ,2 ]
机构
[1] TKM Coll Engn Kollam, Dept Civil Engn, Kollam 691005, Kerala, India
[2] APJ Abdul Kalam Technol Univ, Thiruvananthapuram 695016, Kerala, India
关键词
Landslide; Rainfall; Non-stationary; Temporal probability; Hazard; CLIMATE-CHANGE; SUSCEPTIBILITY; INDIA; RISK; THRESHOLDS; PERIOD; KERALA;
D O I
10.1007/s41748-024-00445-6
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The rate of occurrence and size of shallow landslides may be significantly impacted by alterations in rainfall pattern under changing climate. Thus, it becomes apparent to develop hazard maps instead of susceptibility maps for the effective landslide hazard mitigation. The probability of landslides for the different time horizons is accounted by considering exceedance probability of rainfall as a proxy measure. The stationarity assumption of rainfall data to estimate the temporal probability of landslides is no longer appropriate in a changing environment. In this study, the rainfall non-stationarity for the multiple sites of the Wayanad district of Kerala is taken into account when developing the landslide hazard map (LHM) considering extreme rainfall event of 2018 In the first phase of the preparation of LHM, the landslide susceptibility map (LSM) of the district is developed using Random Forest (RF) model. The probability of exceedance of rainfall threshold was then evaluated using generalized extreme value (GEV) analysis using a novel multi-site rainfall information approach that accounts for antecedent rainfall. The temporal probability of rainfall is then integrated with LSM to develop the LH maps of Wayanad district for the different discrete time horizons up to 50 years. The proposed framework for developing LH map is found to be more robust than the conventional practice of hazard zonation based on LSM under a non-stationary rainfall condition in changing climate scenario.
引用
收藏
页码:337 / 355
页数:19
相关论文
共 69 条
[1]   Factors Affecting Landslide Susceptibility Mapping: Assessing the Influence of Different Machine Learning Approaches, Sampling Strategies and Data Splitting [J].
Abraham, Minu Treesa ;
Satyam, Neelima ;
Lokesh, Revuri ;
Pradhan, Biswajeet ;
Alamri, Abdullah .
LAND, 2021, 10 (09)
[2]   The Selection of Rain Gauges and Rainfall Parameters in Estimating Intensity-Duration Thresholds for Landslide Occurrence: Case Study from Wayanad (India) [J].
Abraham, Minu Treesa ;
Satyam, Neelima ;
Rosi, Ascanio ;
Pradhan, Biswajeet ;
Segoni, Samuele .
WATER, 2020, 12 (04)
[3]   Rainfall Thresholds for Prediction of Landslides in Idukki, India: An Empirical Approach [J].
Abraham, Minu Treesa ;
Pothuraju, Deekshith ;
Satyam, Neelima .
WATER, 2019, 11 (10)
[4]   Developing Short Term Drought Severity-Duration-Frequency Curves for Kerala Meteorological Subdivision, India Using Bivariate Copulas [J].
Adarsh, S. ;
Karthik, S. ;
Shyma, M. ;
Das, Prem G. ;
Parveen, A. T. Shirin ;
Sruthi, Narayan .
KSCE JOURNAL OF CIVIL ENGINEERING, 2018, 22 (03) :962-973
[5]   Temporal probability analysis of landslides triggered by intense rainfall in the Bamenda Mountain Region, Cameroon [J].
Afungang, Roland Ngwatung ;
Bateira, Carlos Valdir .
ENVIRONMENTAL EARTH SCIENCES, 2016, 75 (12)
[6]   The tale of three landslides in the Western Ghats, India: lessons to be learnt [J].
Ajin, R. S. ;
Nandakumar, D. ;
Rajaneesh, A. ;
Oommen, T. ;
Ali, Yunus P. ;
Sajinkumar, K. S. .
GEOENVIRONMENTAL DISASTERS, 2022, 9 (01)
[7]  
[Anonymous], 2013, Extremes in a Changing Climate: Detection, Analysis and Uncertainty, DOI [10.1007/978-94-007-4479-0{_}2, DOI 10.1007/978-94-007-4479-0{_}2, 10.1007/978-94-007-4479-0_2]
[8]   Prediction of the August 2018 heavy rainfall events over Kerala with high-resolution NWP models [J].
Ashrit, Raghavendra ;
Sharma, Kuldeep ;
Kumar, Sushant ;
Dube, Anumeha ;
Karunasagar, S. ;
Arulalan, T. ;
Mamgain, Ashu ;
Chakraborty, Paromita ;
Kumar, Sumit ;
Lodh, Abhishek ;
Dutta, Devajyoti ;
Momin, Imranali ;
Bushair, M. T. ;
Prakash, Buddhi J. ;
Jayakumar, A. ;
Rajagopal, E. N. .
METEOROLOGICAL APPLICATIONS, 2020, 27 (02)
[9]   Flood risk analysis and mapping under compound hazards: A copula approach for tropical coastal district of Alappuzha, India [J].
Binoy, Sneha ;
Jyoma, J. P. ;
Adarsh, S. ;
Siddik, Muhammed ;
Nourani, Vahid ;
Alisha, A. ;
Sreeshma, T. .
JOURNAL OF HYDRO-ENVIRONMENT RESEARCH, 2023, 46 :60-71
[10]   Development of a data-driven model for spatial and temporal shallow landslide probability of occurrence at catchment scale [J].
Bordoni, M. ;
Vivaldi, V. ;
Lucchelli, L. ;
Ciabatta, L. ;
Brocca, L. ;
Galve, J. P. ;
Meisina, C. .
LANDSLIDES, 2021, 18 (04) :1209-1229