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Conference Jul 2026

Risk Assessment of Metro Protection Zones Based on GIS Spatial Overlay and Multi-Scale Discretization

This study develops a GIS-driven framework for multi-scale discretization and cross-scale consistency verification. By converting metro protection zones into assessment units at the macro, meso, and micro scales and overlaying their respective risk layers, the framework identifies stable high-risk segments that are consistently detected across various spatial granularities. The proposed multi-scale risk assessment framework offers several advantages over traditional approaches. The inter-station segmentation allows for system-wide risk monitoring, while fixedlength segmentation facilitates localized risk analysis, and original construction method segmentation provides detailed engineering risk assessment. The evaluation index system, encompassing geological, structural, and operational factors, ensures comprehensive risk coverage. The application of fuzzy mathematics and heuristic weighting methods enhances the objectivity of risk quantification, reducing subjective biases in the assessment process. The empirical results from Guangzhou Metro case studies validate the framework's effectiveness in identifying high-risk sections consistently across different spatial scales. This multi-scale approach supports decision-makers in implementing targeted risk mitigation measures, optimizing resource allocation, and improving the overall safety and reliability of urban rail transit systems.

Ruwen Zhao, Sen He, Si-Huang Chen et al. · 0 citations
Conference Jul 2026

Study on Land Subsidence Characteristics in Guangzhou Metro Protection Zones Based on Time-Series InSAR and Gis Spatial Analysis

This study performs a spatiotemporal analysis and multi-dimensional attribution of land subsidence within Guangzhou's urban rail transit zones. Utilizing TS-InSAR (SBAS and PS-InSAR) on multi-source SAR imagery, we identified a “Stable North, Subsiding South” paradigm. While the urban core remains stable, extreme subsidence exceeding $280 ~\text{mm} /$ year persists in the rapidly developing Panyu and Nansha districts. Integrating GIS-based spatial overlay analysis, we quantified the driving mechanisms: a superposition of thick (15-40m) marine-terrestrial soft soils and anthropogenic pressures, including heavy building loads, groundwater extraction, and metroinduced socio-agglomeration. Tectonic faults further catalyze localized differential settlement. We propose a lightweight, intuitive analytical framework that bypasses the complexity of traditional geotechnical modeling. This approach provides essential spatial decision support for operational safety, early warning, and sustainable infrastructural planning in high-density deltaic metropolises.

Qi-Lin Hu, Junxia Wushan, Si-Huang Chen et al. · 0 citations