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Research Article

Identifying river changes by river pattern events: a case study of the Lower Yellow River, China

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Article: 2168070 | Received 15 Aug 2022, Accepted 09 Jan 2023, Published online: 31 Jan 2023

References

  • Ahmadlou M, Ghajari YE, Karimi M. 2023. Enhanced classification and regression tree (CART) by genetic algorithm (GA) and grid search (GS) for flood susceptibility mapping and assessment. Geocarto Int. 38.
  • Bora M, Goswami DC. 2022. RS-GIS based assessment of the impact of Hatimura embankment on the channel planform of the Kolong River, Assam, India. Geocarto Int. 17(19):5547–5563.
  • Chen J, Lin Y, Liu W, Zhou X. 2012. Formal classification of spatial incremental changes for updating. Acta Geodaetica et Cartographica Sin. 41(1):108–114.
  • Chen WL, Wei JH, Li MJ, Zhou YJ. 2015. Fractal measurement of river bed surface and its application on river pattern discrimination. Sci Sin-Tech. 45(10):1073–1079.
  • Chen JG, Zhou WH, Sun GH, Hong J. 2008. Initial operation of Xiaolangdi Reservoir and responses of sedimentation in the Lower Yellow River. J Sediment Res. 5:1–8.
  • Clerici A, Perego S, Chelli A, Tellini C. 2015. Morphological changes of the floodplain reach of the Taro River (Northern Italy) in the last two centuries. J Hydrol. 527:1106–1122.
  • Dewan A, Corner R, Saleem A, Rahman MM, Haider MR, Rahman MM, Sarker MH. 2017. Assessing channel changes of the Ganges-Padma River system in Bangladesh using Landsat and hydrological data. Geomorphology. 276:257–279.
  • Dingle EH, Paringit EC, Tolentino P, Williams RD, Hoey TB, Barrett B, Long H, Smiley C, Stott E. 2019. Decadal-scale morphological adjustment of a lowland tropical river. Geomorphology. 333:30–42.
  • Dolan F, Lamontagne J, Link R, Hejazi M, Reed PM, Edmonds J. 2021. Water ecological security assessment and spatial autocorrelation analysis of prefectural regions involved in the Yellow River Basin. Nat Commun. 12(1):1–10.
  • Du YY, Yi JW, Xue CJ, Qian JL, Pei T. 2021. Modeling and analysis of geographic events supported by multi-source geographic big data. Acta Geograph Sin. 76(11):2853–2866.
  • Eaton BC, Millar RG, Davidson S. 2010. Channel patterns: braided, anabranching, and single-thread. Geomorphology. 120(3–4):353–364.
  • Grill G, Lehner B, Thieme M, Geenen B, Tickner D, Antonelli F, Babu S, Borrelli P, Cheng L, Crochetiere H, et al. 2019. Mapping the world’s free-flowing rivers. Nature. 569(7755):215–221.
  • He YF, Sheng YH, Hofer B, Huang Y, Qin JR. 2022. Processes and events in the centre: a dynamic data model for representing spatial change. Int J Digit Earth. 15(1):276–295.
  • Hossain MA, Gan TY, Baki A. 2013. Assessing morphological changes of the Ganges River using satellite images. Quatern Int. 304(5):142–155.
  • Kong D, Latrubesse EM, Miao C, Zhou R. 2020. Morphological response of the Lower Yellow River to the operation of Xiaolangdi Dam, China. Geomorphology. 350:106931.
  • Kong D, Miao C, Wu J, Borthwick AGL, Duan Q, Zhang X. 2017. Environmental impact assessments of the Xiaolangdi Reservoir on the most hyperconcentrated laden river, Yellow River, China. Environ Sci Pollut Res Int. 24(5):4337–4351.
  • Lehner B, Liermann CR, Revenga C, Vörösmarty C, Fekete B, Crouzet P, Döll P, Endejan M, Frenken K, Magome J, et al. 2011. High-resolution mapping of the world’s reservoirs and dams for sustainable river-flow management. Front Ecol Environ. 9(9):494–502.
  • Li J, Xia J, Zhou M, Zhang X. 2017. Variation in reach-scale thalweg-migration intensity in a braided reach of the lower Yellow River in 1986-2015: reach-scale Thalweg-migration intensity in a braided reach. Earth Surf Proc Land. 42(13):1–40.
  • Liang L, Guodong Y, Shengbo C. 2017. A combinatorial reasoning mechanism with topological and metric relations for change detection in river planforms: an application to GlobeLand30's water bodies. ISPRS Int J Geo-Inf. 6(1):13.
  • Liu W, Wang S, Sang Y, Ran L, Ma Y. 2021. Effects of large upstream reservoir operations on cross-sectional changes in the channel of the lower Yellow River reach. Geomorphology. 387:107768.
  • Ma Y, He QH, Nanson GC, Li Y, Yao W. 2012. Channel adjustments in response to the operation of large dams: the upper reach of the lower Yellow River. Geomorphology. 147–148:35–48.
  • Mcfeeters SK. 1996. The use of the Normalized Difference Water Index (NDWI) in the delineation of open water features. Int J Remote Sens. 17(7):1425–1432.
  • Miao CY, Kong DX, Wu JW, Duan QY. 2016. Functional degradation of the water-sediment regulation scheme in the lower Yellow River: spatial and temporal analyses. Sci Total Environ. 551–552:16–22.
  • Mo Y, Wu Y, Yang X, Liu F, Liao Y. 2022. Review the state-of-the-art technologies of semantic segmentation based on deep learning. Neurocomputing. 493:626–646.
  • Monegaglia F, Zolezzi G, Güneralp I, Henshaw AJ, Tubino M. 2018. Automated extraction of meandering river morphodynamics from multitemporal remotely sensed data. Environ Model Softw. 105:171–186.
  • Nanson G, Gibling MR. 2003. Anabranching rivers. In: Middleton GV, editor. The encyclopedia of sediments and sedimentary rocks. London: Kluwer Academic Publishers; p. 9–11.
  • Nanson G, Gibling MR. 2004. Anabranching and anastomosing river. In: Goudie AS, editor. Encyclopedia of geomorphology, Vol. 1. London: Routledge; p. 23–25.
  • Nardini A, Brierley G. 2021. Automatic river planform identification by a logical-heuristic algorithm. Geomorphology. 375(1–2):107558.
  • Nawfee SM, Dewan A, Rashid T. 2018. Integrating subsurface stratigraphic records with satellite images to investigate channel change and bar evolution: A case study of the Padma River, Bangladesh. Environ. Earth Sci. 77(89):1–14.
  • Ostrowski P, Falkowski T, Utratna-Ukowska M. 2021. The effect of geological channel structures on floodplain morphodynamics of lowland rivers: a case study from the Bug River, Poland. Catena. 202(1):105209.
  • Pekel JF, Cottam A, Gorelick N, Belward A. 2016. High-resolution mapping of global surface water and its long-term changes. Nature. 540(7633):418–422.
  • Peuquet DJ, Niu D. 1995. An event-based spatiotemporal data model (ESTDM) for temporal analysis of geographical data. Int J Geographical Inf Sys. 9(1):7–24.
  • Qian N. 1985. On the classification and causes of formation of different river patterns. Acta Geograph Sin. 40:1–10.
  • Qiu M, Zuo Q, Wu Q, Yang Z, Zhang J. 2022. Water ecological security assessment and spatial autocorrelation analysis of prefectural regions involved in the Yellow River Basin. Sci Rep. 12(1):5105.
  • Ripl W. 2003. Water: the bloodstream of the biosphere. Philos Trans R Soc Lond B Biol Sci. 358(1440):1921–1934.
  • Schneider P, Xhafa F. 2022. Anomaly Detection and Complex Event Processing over IoT Data Streams, Chapter 4 - Complex event processing: building complex events from simple, atomic events. Amsterdam, the Netherlands: Academic Press; p. 67–85.
  • Schumm SA. 1985. Patterns of alluvial rivers. Annu Rev Earth Planet Sci. 13(1):5–27.
  • Shahrood AJ, Menberu MW, Darabi H, Rahmati O, Rossi PM, Kløve B, Haghighi AT. 2020. RiMARS: an automated river morphodynamics analysis method based on remote sensing multispectral datasets. Sci Total Environ. 719:137336.
  • Shrestha S, Imbulana N, Piman T, Chonwattana S, Ninsawat S, Babur M. 2020. Multimodelling approach to the assessment of climate change impacts on hydrology and river morphology in the Chindwin River Basin, Myanmar. Catena. 188:104464.
  • Twidale CR. 2004. River patterns and their meaning. Earth Sci Rev. 67(3-4):159–218.
  • Wang Y, Wu B, Zhong D. 2020. Adjustment in the main-channel geometry of the lower Yellow River before and after the operation of the Xiaolangdi Reservoir from 1986 to 2015. J Geogr Sci. 30(3):468–487.
  • Xia HQ, Li DR, Zheng CY. 2011. A geographical event-based spatiotemporal data model and its application in land use. Sci Surv Mapping. 36(4):124–127.
  • Xia J, Wang Y, Zhou M, Deng S, Li Z, Wang Z. 2021. Variations in channel centerline migration rate and intensity of a braided reach in the Lower Yellow River. Remote Sens. 13(9):1680.
  • Xu H. 2006. Modification of normalised difference water index (NDWI) to enhance open water features in remotely sensed imagery. Int J Remote Sens. 27(14):3025–3033.
  • Zhao Y, Zeng L, Wei Y, Liu J, Deng J, Deng Q, Tong K, Li J. 2020. An indicator system for assessing the impact of human activities on river structure. J Hydrol. 582:124547.
  • Zheng K, Xie MH, Zhang JB, Xie J, Xia SH. 2022. A knowledge representation model based on the geographic spatiotemporal process. Int J Geographical Inf Sci. 36(4):674–691.