Aitsi-Selmi, A., Egawa, S., Sasaki, H., et al., 2015. The Sendai Framework for Disaster Risk Reduction: Renewing the Global Commitment to People's Resilience, Health, and Well-Being. International Journal of Disaster Risk Science, 6(2): 164–176. https://doi.org/10.1007/s13753-015-0050-9 |
Alikaei, S., Rahmani, M., Jamalabadi, F., et al., 2023. Multi-Hazard Based Land Use Planning in Isolated Area; Learning from the Experience of Pul-E-Khumri City, Afghanistan. Sustainable Cities and Society, 99: 104873. https://doi.org/10.1016/j.scs.2023.104873 |
Bao, Z. Y., Chen, B., 2004. Construction of Urban Green Space System and Reduction and Prevention of Urban Disaster. Journal of Natural Disasters, 13(2): 155–160 (in Chinese with English Abstract) |
Chen, G., Zhang, Y., Zeng, R. Q., et al., 2018. Detection of Land Subsidence Associated with Land Creation and Rapid Urbanization in the Chinese Loess Plateau Using Time Series InSAR: A Case Study of Lanzhou New District. Remote Sensing, 10(2): 270. https://doi.org/10.3390/rs10020270 |
Duan, X., Dong, Q., Ye, W. J., et al., 2019. Study on Adverse Effects of Groundwater Level Rising Induced by Land Creation Engineering in Hilly and Gully Area of the Loess Plateau. Journal of Mountain Science, 16(12): 2739–2753. https://doi.org/10.1007/s11629-019-5549-x |
Ghosh, P., Sudarsan, J. S., Nithiyanantham, S., 2024. Nature-Based Disaster Risk Reduction of Floods in Urban Areas. Water Resources Management, 38(6): 1847–1866. https://doi.org/10.1007/s11269-024-03757-4 |
Gong, X., Xu, Q., Pu, C. H., et al., 2024. InSAR Time Series Monitoring and Analysis of Land Deformation after Mountain Excavation and City Construction in Lanzhou New Area. Geomatics and Information Science of Wuhan University, 49(2): 236–245 (in Chinese with English Abstract) |
He, M. N., Wang, Y. Q., Tong, Y. P., et al., 2020. Evaluation of the Environmental Effects of Intensive Land Consolidation: A Field-Based Case Study of the Chinese Loess Plateau. Land Use Policy, 94: 104523. https://doi.org/10.1016/j.landusepol.2020.104523 |
Hou, B., 2022. Study on Settlement Deformation Law and Multi-Stage Slope Stability of High Embankmentin by Expansive Soil in Ankang Airport: [Dissertation]. Xi'an University of Technology, Xi'an (in Chinese with English Abstract) |
Ibrahim, A., Salifu, A. H., Peprah, C., 2023. Does Governance Matter when Disaster Looms? Zooming into Proactive Institutional Measures for Flood Risk Management. International Journal of Disaster Risk Reduction, 97: 104021. https://doi.org/10.1016/j.ijdrr.2023.104021 |
Jabareen, Y., 2013. Planning the Resilient City: Concepts and Strategies for Coping with Climate Change and Environmental Risk. Cities, 31: 220–229. https://doi.org/10.1016/j.cities.2012.05.004 |
Lai, G. Q., Yang, H. T., Yin, W. J., et al., 2023. Deformation Instability Mechanism and Treatment Measures of High-Fill Landslide in Southwest Mountainous Area: A Case of Panzhihua Airport. Express Water Resources & Hydropower Information, 44(11): 57–63 (in Chinese with English Abstract) |
Li, K. P., Zhao, X. Y., Xiao, D., 2021. Acid Rain: An Unsuspected Factor Predisposing Panzhihua Airport Landslide, China. Environmental Science and Pollution Research International, 28(27): 36753–36764. https://doi.org/10.1007/s11356-021-13308-8 |
Li, T. B., Liu, J., Ren, Y., et al., 2012. Sliding Mechanism of High-Fill Slope with Pre-Reinforced Piles at Panzhihua Airport. Journal of Engineering Geology, 20(5): 723–731 (in Chinese with English Abstract) |
Li, Y. R., Zhang, X. C., Cao, Z., et al., 2021. Towards the Progress of Ecological Restoration and Economic Development in China's Loess Plateau and Strategy for More Sustainable Development. Science of the Total Environment, 756: 143676. https://doi.org/10.1016/j.scitotenv.2020.143676 |
Liao, M. J., Zhang, R., Lü, J. C., et al., 2021. Subsidence Monitoring of Fill Area in Yan'an New District Based on Sentinel-1A Time Series Imagery. Remote Sensing, 13(15): 3044. https://doi.org/10.3390/rs13153044 |
Liu, W. C., Zhang, Y., Liang, Y. W., et al., 2022. Landslide Risk Assessment Using a Combined Approach Based on InSAR and Random Forest. Remote Sensing, 14(9): 2131. https://doi.org/10.3390/rs14092131 |
Liu, Y. S., Li, Y. H., 2014. China's Land Creation Project Stands Firm. Nature, 511: 410. https://doi.org/10.1038/511410c |
Liu, Z. J., Qiu, H. J., Zhu, Y. R., et al., 2024. Increasing Irrigation-Triggered Landslide Activity Caused by Intensive Farming in Deserts on Three Continents. International Journal of Applied Earth Observation and Geoinformation, 134: 104242. https://doi.org/10.1016/j.jag.2024.104242 |
Lu, H. Y., Li, W. L., Xu, Q., et al., 2024. Active Landslide Detection Using Integrated Remote Sensing Technologies for a Wide Region and Multiple Stages: A Case Study in Southwestern China. Science of the Total Environment, 931: 172709. https://doi.org/10.1016/j.scitotenv.2024.172709 |
Mallma, S. F. T., 2021. Mainstreaming Land Use Planning into Disaster Risk Management: Trends in Lima, Peru. International Journal of Disaster Risk Reduction, 62: 102404. https://doi.org/10.1016/j.ijdrr.2021.102404 |
Meerow, S., Newell, J. P., 2017. Spatial Planning for Multifunctional Green Infrastructure: Growing Resilience in Detroit. Landscape and Urban Planning, 159: 62–75. https://doi.org/10.1016/j.landurbplan.2016.10.005 |
Pu, C. H., Xu, Q., Wang, X. C., et al., 2024. Vegetation Response to Large-Scale Mountain Excavation and City Construction Projects on the Loess Plateau of China. Science of the Total Environment, 946: 174256. https://doi.org/10.1016/j.scitotenv.2024.174256 |
Pu, C. H., Xu, Q., Zhao, K. Y., et al., 2021. Characterizing the Topographic Changes and Land Subsidence Associated with the Mountain Excavation and City Construction on the Chinese Loess Plateau. Remote Sensing, 13(8): 1556. https://doi.org/10.3390/rs13081556 |
Qiu, H. J., Cui, P., Regmi, A. D., et al., 2018. Landslide Distribution and Size versus Relative Relief (Shaanxi Province, China). Bulletin of Engineering Geology and the Environment, 77(4): 1331–1342. https://doi.org/10.1007/s10064-017-1121-5 |
Ren, Z. P., Zhang, S. C., Si, J. Z., et al., 2023. Deformation Interpretation of Expansive Soil by Combining SBAS-InSAR and CR-InSAR at Ankang Airport. Journal of Geodesy and Geodynamics, 43(11): 1112–1116, 1128 (in Chinese with English Abstract) |
Saunders, W. S. A., Kilvington, M., 2016. Innovative Land Use Planning for Natural Hazard Risk Reduction: A Consequence-Driven Approach from New Zealand. International Journal of Disaster Risk Reduction, 18: 244–255. https://doi.org/10.1016/j.ijdrr.2016.07.002 |
Sun, Z. H., Han, J. C., Li, Y. N., et al., 2024. Effects of Large-Scale Land Consolidation Projects on Ecological Environment Quality: A Case Study of a Land Creation Project in Yan'an, China. Environment International, 183: 108392. https://doi.org/10.1016/j.envint.2023.108392 |
Torres Mallma, S. F., 2021. Mainstreaming Land Use Planning into Disaster Risk Management: Trends in Lima, Peru. International Journal of Disaster Risk Reduction, 62: 102404. https://doi.org/10.1016/j.ijdrr.2021.102404 |
Trejo-Rangel, M. A., Marchezini, V., Rodriguez, D. A., et al., 2023. Incorporating Social Innovations in the Elaboration of Disaster Risk Mitigation Policies. International Journal of Disaster Risk Reduction, 84: 103450. https://doi.org/10.1016/j.ijdrr.2022.103450 |
Wang, J. Y., Liu, Y. J., Li, Y. R., 2019. Ecological Restoration under Rural Restructuring: A Case Study of Yan'an in China's Loess Plateau. Land Use Policy, 87: 104087. https://doi.org/10.1016/j.landusepol.2019.104087 |
Wang, L. Y., Qiu, H. J., Zhou, W. Q., et al., 2022. The Post-Failure Spatiotemporal Deformation of Certain Translational Landslides may Follow the Pre-Failure Pattern. Remote Sensing, 14(10): 2333. https://doi.org/10.3390/rs14102333 |
Wang, Z. W., Du, J. F., Wu, S. F., et al., 2020. Water Softening Mechanism and Strength Model for Saturated Carbonaceous Mudstone in Panzhihua Airport, China. Advances in Civil Engineering, 12(1): 1–12. https://doi.org/10.1155/2020/8874201 |
Wei, Y. D., Qiu, H. J., Liu, Z. J., et al., 2024. Refined and Dynamic Susceptibility Assessment of Landslides Using InSAR and Machine Learning Models. Geoscience Frontiers, 15(6): 101890. https://doi.org/10.1016/j.gsf.2024.101890 |
Wu, Q., Jia, C. T., Chen, S. B., et al., 2019. SBAS-InSAR Based Deformation Detection of Urban Land, Created from Mega-Scale Mountain Excavating and Valley Filling in the Loess Plateau: The Case Study of Yan'an City. Remote Sensing, 11(14): 1673. https://doi.org/10.3390/rs11141673 |
Xu, J. K., Yan, C. D., Boota, M. W., et al., 2024. Research on Automatic Identification of Coal Mining Subsidence Area Based on InSAR and Time Series Classification. Journal of Cleaner Production, 470: 143293. https://doi.org/10.1016/j.jclepro.2024.143293 |
Xu, Q., Pu, C. H., Zhao, K. Y., et al., 2021. Time-Series InSAR monitoring and Analysis of the Spatial and Temporal Evolution of Ground Subsidence in Yan'an New Area. Journal of Wuhan University (Information Science Edition), 46(7): 957–969 (in Chinese with English Abstract) |
Xu, Y. F., 2020. The Hydraulic Mechanism and Swelling Deformation Theory of Expansive Soil. Chinese Journal of Geotechnical Engineering, 42(11): 1979–1987 (in Chinese with English Abstract) |
Yang, W. Y., Yang, R. Y., Qiu, Y. J., 2022. An Indicator System for Assessment on Disaster Resilience of Urban Park Green Space in South China. Chinese Landscape Architecture, 38(8): 105–110 (in Chinese with English Abstract) |
Yang, Z., Cheng, X. H., 2024. High Fill Slope Collapse: Stability Evaluation Based on Finite Element Limit Analyses. Transportation Geotechnics, 44: 101156. https://doi.org/10.1016/j.trgeo.2023.101156 |
Yildirim, Y., Keshavarzi, G., Aman, A. R., 2021. Can Urban Parks Help with Disaster Risk Reduction through Educational Awareness? A Case Study of Hurricane Harvey. International Journal of Disaster Risk Reduction, 61: 102377. https://doi.org/10.1016/j.ijdrr.2021.102377 |
Zhang, B. Q., Ma, D. H., Wang, W., 2024. Implementing a Resistance-Relief Approach into Evaluating Urban Disaster Management Capacity: A Case Study of Xuzhou. International Journal of Disaster Risk Reduction, 103: 104348. https://doi.org/10.1016/j.ijdrr.2024.104348 |
Zhang, D. J., Jia, Q. Q., Wang, P., et al., 2020. Analysis of Spatial Variability in Factors Contributing to Vegetation Restoration in Yan'an, China. Ecological Indicators, 113: 106278. https://doi.org/10.1016/j.ecolind.2020.106278 |
Zhang, H. X., Zeng, R. Q., Zhang, Y., et al., 2022. Subsidence Monitoring and Influencing Factor Analysis of Mountain Excavation and Valley Infilling on the Chinese Loess Plateau: A Case Study of Yan'an New District. Engineering Geology, 297: 106482. https://doi.org/10.1016/j.enggeo.2021.106482 |
Zhang, M. S., 2013. Formation Mechanism as well as Prevention and Controlling Techniques of Loess Geo-Hazards in Irrigated Areas: A Case Study of Heifangtai Immigration Area in the Three Gorges Reservoir of the Yellow River. Geological Bulletin of China, 32(6): 833–839 (in Chinese with English Abstract) |
Zhang, P., Guo, Z. H., Guo, S. F., et al., 2022. Land Subsidence Monitoring Method in Regions of Variable Radar Reflection Characteristics by Integrating PS-InSAR and SBAS-InSAR Techniques. Remote Sensing, 14(14): 3265. https://doi.org/10.3390/rs14143265 |
Zhang, S. C., Si, J. Z., Niu, Y. F., et al., 2022. Surface Deformation of Expansive Soil at Ankang Airport, China, Revealed by InSAR Observations. Remote Sensing, 14(9): 2217. https://doi.org/10.3390/rs14092217 |
Zhao, F. M., Chen, G., Zhang, Y., et al., 2019. Land Subsidence Monitoring in Lanzhou New District Based on SBAS Technology. Journal of Lanzhou University (Natural Science Edition), 53(6): 707–715 (in Chinese with English Abstract) |
Zhou, C. D., Lan, H. X., Bürgmann, R., et al., 2022. Application of an Improved Multi-Temporal InSAR Method and Forward Geophysical Model to Document Subsidence and Rebound of the Chinese Loess Plateau Following Land Reclamation in the Yan'an New District. Remote Sensing of Environment, 279: 113102. https://doi.org/10.1016/j.rse.2022.113102 |
Zhou, C., Yin, K. L., Cao, Y., et al., 2016. Application of Time Series Analysis and PSO-SVM Model in Predicting the Bazimen Landslide in the Three Gorges Reservoir, China. Engineering Geology, 204: 108–120. https://doi.org/10.1016/j.enggeo.2016.02.009 |
Zhu, Y. R., Qiu, H. J., Liu, Z. J., et al., 2024. Rainfall and Water Level Fluctuations Dominated the Landslide Deformation at Baihetan Reservoir, China. Journal of Hydrology, 642: 131871. https://doi.org/10.1016/j.jhydrol.2024.131871 |