China Safety Science Journal ›› 2026, Vol. 36 ›› Issue (8): 243-250.doi: 10.16265/j.cnki.issn1003-3033.2026.08.1447

• Disaster Prevention and Mitigation Technology and Engineering • Previous Articles     Next Articles

Geological disaster risk assessment based on SCE

Yu Zhonghai1,2(), Wang Lu1,2, Liu Qian1, Yan Libo1, Fang Qiang3, Duan Longmei1,2,**()   

  1. 1 Ji'nan Geotechnical Investigation and Surveying Research Institute, Ji'nan Shandong 250101, China
    2 Shandong Data Open Innovative Application Laboratory(Technological Innovation of Spatio-temporal Information Open), Ji'nan Shandong 250101, China
    3 Beijing Sat Image Information Technology Co., Ltd., Beijing 100130, China
  • Received:2026-03-14 Revised:2026-06-12 Online:2026-08-28 Published:2027-02-28
  • Contact: Duan Longmei

Abstract:

To accurately identify the distribution of geological disaster risk in the 2 630 km2 hilly and mountainous areas of southern Jinan City and to support refined regional disaster prevention and mitigation, a multi-source-data-integrated assessment method at the village and community was proposed. First, surface deformation field was obtained from L-band Synthetic Aperture Radar (SAR) data acquired by the domestic Lutan-1 satellite using the Small Baseline Subset Interferometric Synthetic Aperture Radar (SBAS-InSAR) technique. Then an assessment index system of “hazard source-exposed elements” was constructed by integrating multi-source information, including geological hazards, socio-economic data, topography, and meteorological factors. Finally, the level difference maximization combination method was employed to integrate the Analytic Hierarchy Process (AHP) and the Entropy Weight Method(EWM) for determining subjective and objective combination weights. Subsequently, a risk assessment model was constructed by introducing SCE multi-attribute decision-making model. The results show that 163 high-risk villages and communities are identified among the 1095 villages and communities in the study area, primarily concentrated in Zhangqiu District and Laiwu District. The maximum surface subsidence rate, the number of geological hazard sites, and the resident population are the three main factors affecting geological disaster risk in the study area. For high-risk villages and communities, priority should be given to strengthen safety-production supervision of open-pit mines, hazard inspection and rectification for self-built houses, hillside restoration, waterlogging prevention and control, and geological disaster monitoring and early warning.

Key words: symmetric cross entropy(SCE), geological disaster, safety risk assessment, level difference maximization combined weighting, ground subsidence

CLC Number: