4.6 Article

Landslide Susceptibility Assessment Using the Analytic Hierarchy Process (AHP): A Case Study of a Construction Site for Photovoltaic Power Generation in Yunxian County, Southwest China

Journal

SUSTAINABILITY
Volume 15, Issue 6, Pages -

Publisher

MDPI
DOI: 10.3390/su15065281

Keywords

landslide susceptibility zone mapping; photovoltaic power construction; analytic hierarchy process (AHP)

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China is actively promoting clean energy construction to achieve carbon neutrality. However, engineering constructions in mountainous regions are vulnerable to landslide disasters. Therefore, it is crucial to assess the susceptibility of landslide disasters for disaster prevention and risk management in construction projects. This study conducted a field survey at 42 landslide points in the selected planned site region and assessed landslide susceptibility based on 11 impact factors using AHP method. The resulting landslide susceptibility zone map showed high accuracy, with an AUC value of 0.845 according to the ROC curve analysis.
China is actively promoting the construction of clean energy to reach its objective of achieving carbon neutrality. However, engineering constructions in mountainous regions are susceptible to landslide disasters. Therefore, the assessment of landslide disaster susceptibility is indispensable for disaster prevention and risk management in construction projects. In this context, the present study involved conducting a field survey at 42 landslide points in the selected planned site region. According to the geological and geographical conditions of the study region, the existing regulation, and the influencing factors of landslides, the assessment in the field survey was performed based on 11 impact factors, namely, the slope, slope aspect, curvature, relative relief, NDVI, road, river, fault, lithology, the density of the landslide points, and the land-use type. Next, based on their respective influences, these impact factors were further divided into subfactors according to AHP, and the weights of each factor and subfactor were calculated. The GIS tools were employed for linear combination calculation and interval division, and accordingly, a landslide susceptibility zone map was constructed. The ROC curve was adopted to test the partition evaluation results, and the AUC value was determined to be 0.845, which indicated the high accuracy of the partition evaluation results.

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