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Articles

Change in regional land subsidence in Beijing after south-to-north water diversion project observed using satellite radar interferometry

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Pages 140-156 | Received 29 Mar 2019, Accepted 26 Sep 2019, Published online: 28 Oct 2019

References

  • Berti, M., C. Alessandro, S. Franceschini, and J. Iannacone. 2013. “Automated Classification of Persistent Scatterers Interferometry Time-series.” Natural Hazard and Earth System Sciences 13 (8): 1945–1958. doi:10.5194/nhess-13-1945-2013.
  • Chen, B., H. Gong, X. Li, K. Lei, L. Zhu, M. Gao, and C. Zhou. 2017a. “Characterization and Causes of Land Subsidence in Beijing, China.” International Journal of Remote Sensing 38 (3): 808–826. doi:10.1080/01431161.2016.1259674.
  • Chen, M., R. Tomás, Z. Li, M. Motagh, T. Li, L. Hu, H. Gong, X. Li, J. Yu, and X. Gong. 2016. “Imaging Land Subsidence Induced by Groundwater Extraction in Beijing (China) Using Satellite Radar Interferometry.” Remote Sensing 8 (6): 468. doi:10.3390/rs8060468.
  • Chen, W., H. Gong, B. Chen, K. Liu, M. Gao, and C. Zhou. 2017b. “Spatiotemporal Evolution of Land Subsidence around a Subway Using InSAR Time-series and the Entropy Method.” GIScience & Remote Sensing 54 (1): 78–94. doi:10.1080/15481603.2016.1257297.
  • Cheng, L., Z. Fan, X. Wang, R. Bi, Y. Luo, and F. Yang. 2018. “New Trend of Groundwater and Land Subsidence in Typical AreasAfter the South-to-North Water Transfer into Beijing.” Yellow River 40 (7): 82–87.
  • Deng, Z., Y. Ke, H. Gong, X. Li, and Z. Li. 2017. “Land Subsidence Prediction in Beijing Based on PS-InSAR Technique and Improved Grey-Markov Model.” GIScience & Remote Sensing 54 (6): 797–818. doi:10.1080/15481603.2017.1331511.
  • Ferretti, A., C. Prati, and F. Rocca. 2000. “Nonlinear Subsidence Rate Estimation Using Permanent Scatterers in Differential SAR Interferometry.” IEEE Transactions on Geoscience and Remote Sensing 38 (5): 2202–2212. doi:10.1109/36.868878.
  • Fiaschi, S., S. Tessitore, R. Bonì, D. Martire, V. Achilli, S. Borgstrom, A. Ibrahim, et al. 2017. “From ERS-1/2 to Sentinel-1: Two Decades of Subsidence Monitored through A-DInSAR Techniques in the Ravenna Area (Italy).” GIScience & Remote Sensing 54 (3): 305–328. doi:10.1080/15481603.2016.1269404.
  • Fu, Z., Y. Wang, W. Lu, H. Zhao, J. Liu, and H. Guo. 2018. “An Inexact Stochastic Optimization Model for Multi-conflict Regional Water Resources Allocation in the South-to-north Water Benefited Area.” Journal of Hydroinformatics 20 (4): 946–959. doi:10.2166/hydro.2018.121.
  • Gao, M., H. Gong, B. Chen, X. Li, C. Zhou, M. Shi, Y. Si, Z. Chen, and G. Duan. 2018. “Regional Land Subsidence Analysis in Eastern Beijing Plain by InSAR Time Series and Wavelet Transforms.” Remote Sensing 10 (3): 365. doi:10.3390/rs10030365.
  • Guo, L., H. Gong, F. Zhu, L. Zhu, Z. Zhang, C. Zhou, M. Gao, and Y. Sun. 2019. “Analysis of the Spatiotemporal Variation in Land Subsidence on the Beijing Plain, China.” Remote Sensing 11 (10): 1170. doi:10.3390/rs11101170.
  • Hooper, A. 2008. “A Multi-temporal InSAR Method Incorporating Both Persistent Scatterer and Small Baseline Approaches.” Geophysical Research Letters 35 (16). doi:10.1029/2008GL034654.
  • Iannacone, J., A. Corsini, M. Berti, J. Morgan, and G. Falorni. 2015. “Characterization of Longwall Mining Induced Subsidence by Means of Automated Analysis of InSAR Time-series.” In Engineering Geology for Society and Territory-Volume 5, edited by G. Lollino, A. Manconi, F. Guzzetti, M. Culshaw, P. Bobrowsky, and F. Luino, 973–977. Cham: Springer. doi:10.1029/2008GL034654.
  • Kampes, B., and R. Hanssen. 2004. “Ambiguity Resolution for Permanent Scatterer Interferometry.” IEEE Transactions on Geoscience and Remote Sensing 42 (11): 2446–2453. doi:10.1109/TGRS.2004.835222.
  • Krishnan, P. V., D. Kim, and J. Jung. 2017. “Subsidence in the Kathmandu Basin, before and after the 2015 Mw 7.8 Gorkha Earthquake, Nepal Revealed from Small Baseline Subset-DInSAR Analysis.” GIScience & Remote Sensing 55 (4): 604–621. doi:10.1080/15481603.2017.1422312.
  • Lanari, R., F. Casu, M. Manzo, G. Zeni, P. Berardino, M. Manunta, and A. Pepe. 2007. “An Overview of the Small BAseline Subset Algorithm: A DInSAR Technique for Surface Deformation Analysis.” Pure and Applied Geophysics 164 (4): 637–661. doi:10.1007/s00024-007-0192-9.
  • Li, B., M. Sivapalan, and X. Xu. 2019. “An Urban Sociohydrologic Model for Exploration of Beijing’s Water Sustainability Challenges and Solution Spaces.” Water Resources Research 55 (7): 5918–5940. doi:10.1029/2018WR023816.
  • Mantovani, M., S. Devoto, D. Piacentini, M. Prampolini, M. Soldati, and A. Pasuto. 2016. “Advanced SAR Interferometric Analysis to Support Geomorphological Interpretation of Slow-moving Coastal Landslides (Malta, Mediterranean Sea).” Remote Sensing 8 (6): 443. doi:10.3390/rs8060443.
  • Mohammadimanesh, F., B. Salehi, M. Mahdianpari, J. English, J. Chamberland, and P. Alasset. 2019. “Monitoring Surface Changes in Discontinuous Permafrost Terrain Using Small Baseline SAR Interferometry, Object-based Classification, and Geological Features: A Case Study from Mayo, Yukon Territory, Canada.” GIScience & Remote Sensing 56 (4): 485–510. doi:10.1080/15481603.2018.1513444.
  • Qin, H., C. Andrews, F. Tian, G. Cao, Y. Luo, J. Liu, and C. Zheng. 2018. “Groundwater-pumping Optimization for Land-subsidence Control in Beijing Plain, China.” Hydrogeology Journal 26: 1061–1081. doi:10.1007/s10040-017-1712-z.
  • Raspini, F., S. Bianchini, A. Ciampalini, M. Soldato, L. Solari, F. Novali, S. Conte, A. Rucci, A. Ferretti, and N. Casagli. 2018. “Continuous, Semi-automatic Monitoring of Ground Deformation Using Sentinel-1 Satellites.” Scientific Reports 8 (1): 7253. doi:10.1038/s41598-018-25369-w.
  • Ruiz-Armenteros, A., M. Bakon, M. Lazecky, J. Delgado, J. Sousa, D. Perissin, and M. Caro-Cuenca. 2016. “Multi-Temporal InSAR Processing Comparison in Presence of High Topography.” Procedia Computer Science 100: 1181–1190. doi:10.1016/j.procs.2016.09.278.
  • Terzaghi, K. 1925. “Principles of Soil Mechanics, IV—Settlement and Consolidation of Clay.” Engineering News-Record 95: 874–878.
  • Yang, Q., Y. Ke, D. Zhang, B. Chen, H. Gong, M. Lv, L. Zhu, and X. Li. 2018. “Multi-Scale Analysis of the Relationship between Land Subsidence and Buildings: A Case Study in an Eastern Beijing Urban Area Using the PS-InSAR Technique.” Remote Sensing 10 (7): 1006. doi:10.3390/rs10071006.
  • Zhang, M., L. Hu, L. Yao, and W. Yin. 2018. “Numerical Studies on the Influences of the South-to-North Water Transfer Project on Groundwater Level Changes in the Beijing Plain, China.” Hydrological Processes 32 (12): 1858–1873. doi:10.1002/hyp.13125.
  • Zhang, Y., H. Gong, Z. Gu, R. Wang, X. Li, and W. Zhao. 2014. “Characterization of Land Subsidence Induced by Groundwater Withdrawals in the Plain of Beijing City, China.” Hydrogeology Journal 22 (2): 397–409. doi:10.1007/s10040-013-1069-x.
  • Zhou, C., H. Gong, B. Chen, F. Zhu, G. Duan, M. Gao, and W. Lu. 2016. “Land Subsidence under Different Land Use in the Eastern Beijing Plain, China 2005–2013 Revealed by InSAR Timeseries Analysis.” GIScience & Remote Sensing 53 (6): 671–688. doi:10.1080/15481603.2016.1227297.
  • Zhou, C., H. Gong, B. Chen, W. Li, M. Gao, F. Zhu, W. Chen, and Y. Liang. 2017. “InSAR Time-Series Analysis of Land Subsidence under Different Land Use Types in the Eastern Beijing Plain, China.” Remote Sensing 9 (4): 380. doi:10.3390/rs9040380.
  • Zhou, C., H. Gong, Y. Zhang, T. Warner, and C. Wang. 2018. “Spatiotemporal Evolution of Land Subsidence in the Beijing Plain 2003–2015 Using Persistent Scatterer Interferometry (PSI) with Multi-Source SAR Data.” Remote Sensing 10 (4): 552. doi:10.3390/rs10040552.
  • Zhu, L., H. Gong, X. Li, R. Wang, B. Chen, Z. Dai, and P. Teatini. 2015. “Land Subsidence Due to Groundwater Withdrawal in the Northern Beijing Plain, China.” Engineering Geology 193: 243–255. doi:10.1016/j.enggeo.2015.04.020.

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