Development of a methodology for predicting landslide hazards at a regional scale

Author:

Richer Blanche,Saeidi AliORCID,Boivin Maxime,Rouleau Alain,Lévesque Yan

Abstract

AbstractLandslide risk analysis is a common geotechnical evaluation and it aims to protect life and infrastructure. In the case of sensitive clay zones, landslides can affect large areas and are difficult to predict. Here we propose a methodology to determine the landslide hazard across a large territory, and we apply our approach to the Saint-Jean-Vianney area, Quebec, Canada. The initial step consists of creating a 3D model of the surficial deposits of the target area. After creating a chart of the material electrical resistivity adapted for eastern Canada, we applied electric induction to interpret the regional soil. We transposed parameter values obtained from the laboratory to a larger scale, that is to a regional slope using the results of a back analysis undertaken earlier, on a smaller slide within the same area. The regional 3D model of deposits is then used to develop a zonation map of slopes that are at risk and their respective constraint areas with the study region. This approach allowed us to target specific areas where a more precise stability analysis would be required. Our methodology offers an effective tool for stability analysis in territories characterized by the presence of sensitive clays.

Funder

Mitacs

Publisher

Springer Science and Business Media LLC

Subject

Management, Monitoring, Policy and Law,Geotechnical Engineering and Engineering Geology,Environmental Science (miscellaneous),Safety, Risk, Reliability and Quality,Geography, Planning and Development

Reference47 articles.

1. Aquaveo (2019) Arc hydro groundwater 3.5. https://www.aquaveo.com/software/ahgw-archydro-groundwater-introduction

2. ASTM D2850-15 (2015) Standard test method for unconsolidated-undrained triaxial compression test on cohesive soils. ASTM International, West Conshohocken. https://standards.globalspec.com/std/3859771/astm-d2850-15

3. Bouchard R (1991). Villages Fantômes, Localités Disparues Ou Méconnues Du Haut-Saguenay. Société historique du Saguenay

4. Bureau de normalisation du Québec (BNQ) (2013) Sols—analyse granulométrique des sols inorganiques: BNQ 2501-025/2013. https://www.bnq.qc.ca/fr/normalisation/genie-civil-et-infrastructures-urbaines/sols/sols-analyse-granulometrique-des-sols-inorganiques.html

5. Bureau de normalisation du Québec (BNQ) (2019) Détermination de La Limite de Liquidité à l’aide de l’appareil de Casagrande et de La Limite de Plasticité: BNQ-2501-090/2019.” https://www.bnq.qc.ca/fr/normalisation/genie-civil-et-infrastructures-urbaines/sols/sols-determination-de-la-limite-de-liquidite-a-l-aide-de-l-appareil-de-casagrande-et-de-la-limite-de-plasticite.html

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