183
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Shoreline position trends in the Niger Delta: analyzing spatial and temporal changes through Sentinel-1 SAR imagery

, &
Article: 2346150 | Received 21 Nov 2023, Accepted 18 Apr 2024, Published online: 08 May 2024

References

  • Adegoke J, Fageja M, James G, Agbaje G, Ologunorisa T. 2010. An assessment of recent changes in the Niger Delta coastline using satellite imagery. JSD. 3(4):277–296. doi: 10.5539/jsd.v3n4p277.
  • Allen JRL. 1965. Coastal geomorphology of Eastern Nigeria: beach ridge barrier islands and vegetated tidal flats. Geol Mijnbouw. 44:1–21.
  • Anthony EJ. 2015. Wave influence in the construction, shaping and destruction of river deltas: a review. Mar Geol. 361:53–78. doi: 10.1016/j.margeo.2014.12.004.
  • Anthony EJ, Almar R, Besset M, Reyns J, Laibi R, Ranasinghe R, Abessolo Ondoa G, Vacchi M. 2019. Response of the Bight of Benin (Gulf of Guinea, West Africa) coastline to anthropogenic and natural forcing, Part 2: sources and patterns of sediment supply, sediment cells, and recent shoreline change. Cont Shelf Res. 173:93–103. doi: 10.1016/j.csr.2018.12.006.
  • Antolínez JaA, Méndez FJ, Camus P, Vitousek S, González EM, Ruggiero P, Barnard P. 2016. A multiscale climate emulator for long‐term morphodynamics (MUSCLE‐morpho). JGR Oceans. 121(1):775–791. doi: 10.1002/2015JC011107.
  • Apostolopoulos DN, Avramidis P, Nikolakopoulos KG. 2022. Estimating quantitative morphometric parameters and spatiotemporal evolution of the Prokopos lagoon using remote sensing techniques. JMSE. 10(7):931. doi: 10.3390/jmse10070931.
  • Armenio E, De Serio F, Mossa M, Petrillo AF. 2019. Coastline evolution based on statistical analysis and modeling. Nat Hazards Earth Syst Sci. 19(9):1937–1953. doi: 10.5194/nhess-19-1937-2019.
  • Ashton A, Murray AB, Arnault O. 2001. Formation of coastline features by large-scale instabilities induced by high-angle waves. Nature. 414(6861):296–300. doi: 10.1038/35104541.
  • Besset M, Anthony EJ, Bouchette F. 2019. Multi-decadal variations in delta shorelines and their relationship to river sediment supply: an assessment and review. Earth Sci Rev. 193:199–219. doi: 10.1016/j.earscirev.2019.04.018.
  • Boak EH, Turner IL. 2005. Shoreline definition and detection: a review. J Coast Res. 214:688–703. doi: 10.2112/03-0071.1.
  • Bowen AJ, Lnman DL. 1966. Budget of littoral sands in the vicinity of point. Arguello, California (No 19): U.S. Army Coastal engineering Research Centre.
  • Bray MJ, Carter DJ, Hooke JM. 1995. Littoral cell definition and budgets for Central Southern England. J Coast Res. 11:381–400.
  • Burningham H, Fernandez-Nunez M. 2020. Shoreline change analysis. In Sandy Beach Morphodynamics; p. 439–460.
  • Chrisben Sam S, Gurugnanam B. 2022. Coastal transgression and regression from 1980 to 2020 and shoreline forecasting for 2030 and 2040, using DSAS along the southern coastal tip of peninsular India. Geod Geodyn. 13(6):585–594. doi: 10.1016/j.geog.2022.04.004.
  • Coleman JM, Wright LD. 1975. Modern river deltas: variability of processes and sand bodies.
  • Dada OA, Li G, Qiao L, Ding D, Ma Y, Xu J. 2016. Seasonal shoreline behaviours along the arcuate Niger Delta coast: complex interaction between fluvial and marine processes. Cont Shelf Res. 122:51–67. doi: 10.1016/j.csr.2016.03.002.
  • Deabes EaM. 2017. Applying ArcGIS to estimate the rates of shoreline and back-shore area changes along the Nile Delta Coast, Egypt. IJG. 08(03):332–348. doi: 10.4236/ijg.2017.83017.
  • Del Río L, Gracia FJ, Benavente J. 2013. Shoreline change patterns in sandy coasts. A case study in SW Spain. Geomorphology. 196:252–266. doi: 10.1016/j.geomorph.2012.07.027.
  • Dike EC. 2022. Deriving shorelines from SAR images to assess coastal vulnerability in data poor regions [PhD]. Lancaster University.
  • Dike EC, Ilic S, Whyatt D, Folkard A. 2020. Shoreline delineation in complex intertidal environments using Sentinel-1 SAR imagery. Lancaster University.
  • Dike EC, Oyetunji AK, Amaechi CV. 2023. Shoreline delineation from synthetic aperture radar (SAR) imagery for high and low tidal states in data-deficient Niger Delta region. JMSE. 11(8):1528. doi: 10.3390/jmse11081528.
  • Do ATK, Vries SD, Stive MJF. 2019. The estimation and evaluation of shoreline locations, shoreline-change rates, and coastal volume changes derived from Landsat images. J Coast Res. 35(1):56. doi: 10.2112/JCOASTRES-D-18-00021.1.
  • Dolan R, Fenster MS, Holme SJ. 1991. Temporal analysis of shoreline recession and accretion. J Coast Res. 7:723–744.
  • Duarte CR, De Miranda FP, Landau L, Souto MVS, Sabadia JaB, Neto CÂDS, Rodrigues LIDC, Damasceno AM. 2018. Short-time analysis of shoreline based on RapidEye satellite images in the terminal area of Pecém Port, Ceará, Brazil. Int J Remote Sens. 39(13):4376–4389. doi: 10.1080/01431161.2018.1457229.
  • Eludoyin OS, Oduore T, Obafemi AA. 2012. Spatio-temporal analysis of shoreline changes in Bonny Island, Nigeria. Ethiop J Env Stud & Manag, 5(2), 123–130.doi: 10.4314/ejesm.v5i2.2.
  • Fearnley SM, Miner MD, Kulp M, Bohling C, Penland S. 2009. Hurricane impact and recovery shoreline change analysis of the Chandeleur Islands, Louisiana, USA: 1855–2005. Geo-Mar Lett. 29(6):455–466. doi: 10.1007/s00367-009-0155-5.
  • Fletcher C, Rooney J, Barbee M, Lim S-C, Richmond B. 2003. Mapping shoreline change using digital orthophotogrammetry on Maui, Hawaii. J Coast Res. 106–124.
  • Foster ER, Savage RJ. 1989. Methods of historical shoreline analysis. In: Magoon OT, Coverse H, Miner D, Tobin LT, Clark D, editors. Coastal Zone '89, American Society of Civil Engineer; p. 4434–4448.
  • Genz AS, Fletcher CH, Dunn RA, Frazer LN, Rooney JJ. 2007. The predictive accuracy of shoreline change rate methods and alongshore beach variation on Maui, Hawaii. J Coast Res. 231:87–105. doi: 10.2112/05-0521.1.
  • Gibbs AE, Richmond BM. 2015. National assessment of shoreline change:Historical shoreline change along the north coast of Alaska, U.S.–Canadian border to Icy Cape (No 2015-1048). US Geological Survey.
  • Hisabayashi M, Rogan J, Elmes A. 2017. Quantifying shoreline change in Funafuti Atoll, Tuvalu using a time series of Quickbird, Worldview and Landsat data. GIScience Remot Sens. 55(3):307–330. doi: 10.1080/15481603.2017.1367157.
  • Hooke JM, Bray MJ. 1995. Coastal groups, littoral cells, policies and plans in the UK. vol. 27. The Royal Geographical Society (with the Institute of British Geographers); p. 358–368.
  • Ibe, A. C. 1988. Coastline erosion in Nigeria, Lagos, Nigeria Nigerian Institute for Oceanography and Marine Research.
  • Ibe AC, Antia EE. 1983. Preliminary assessment of the impact of erosion along the Nigerian shoreline. Lagos: Nigerian Institute for Oceanography and Marine Research.
  • Inman DL. 2005. Littoral cells. In: Schwartz ML, editor. Encyclopedia of coastal science. Dordrecht: Springer Netherlands.
  • Ituen UJ, Johnson IU, Njoku JC. 2014. Shoreline change detection in the Niger Delta. A case study of Ibeno shoreline in Akwa Ibom State, Nigeria. Global J Human Soc Sci. Res. 14(6):25–34
  • Jackson CW. 2004. Quantitative shoreline change analysis of an inlet-influenced transgressive barrier system Figure Eight Island, North Carolina [Master of Science]. University of North Carolina.
  • Jiménez JA, Sánchez-Arcilla A. 1993. Medium-term coastal response at the Ebro delta, Spain. Mar Geol. 114(1–2):105–118. doi: 10.1016/0025-3227(93)90042-T.
  • Jiménez JA, Sánchez-Arcilla A, Bou J, Ortiz MA. 1997. Analysing short-term shoreline changes along the Ebro Delta (Spain) using aerial photographs. J Coast Res. 13:1256–1266.
  • Joseph OA. 2012. Rainfall seasonality in the Niger Delta Belt, Nigeria. J Geogr Reg Plan. 5.
  • Komar PD. 1973. Computer models of delta growth due to sediment input from rivers and longshore transport. Geol Soc America Bull. 84(7):2217–2226. doi: 10.1130/0016-7606(1973)84<2217:CMODGD>2.0.CO;2.
  • Komar PD. 2000. Coastal erosion - underlying factors and human impacts. Shore Beach. 68:3–16.
  • Leatherman SP, Clow B. 1983.UMD shoreline mapping project. IEEE Geosci Remot Sens Soc Newslett. 22(3):5–8.
  • Li X, Zhou Y, Zhang L, Kuang R. 2014. Shoreline change of Chongming Dongtan and response to river sediment load: a remote sensing assessment. J Hydrol. 511:432–442. doi: 10.1016/j.jhydrol.2014.02.013.
  • Mahamud U, Takewaka S. 2018. Shoreline change around a river delta on the Cox’s Bazar Coast of Bangladesh. JMSE. 6(3):80. doi: 10.3390/jmse6030080.
  • Maiti S, Bhattacharya AK. 2009. Shoreline change analysis and its application to prediction: a remote sensing and statistics based approach. Mar Geol. 257(1–4):11–23. doi: 10.1016/j.margeo.2008.10.006.
  • Mangor K, Drønen NK, Kærgaard KH, Kristensen SE. 2017. Shoreline management guidelines. Danish Coastal Authority and Aart Kroon, Geographical Institute, University of Copenhagen, DHI.
  • Miall AD. 1985. Architectural-element analysis: A new method of facies analysis applied to fluvial deposits. Earth Sci Rev. 22(4):261–308. doi: 10.1016/0012-8252(85)90001-7.
  • Motyka JM, Brampton AH. 1993. Coastal management – mapping of littoral cells. HR Wallingford: Ministry of Agricuhure, Fisheries and Food.
  • Nair LS, Sundar V, Kurian NP. 2015. Longshore sediment transport along the coast of Kerala in Southwest India. Procedia Eng. 116:40–46. doi: 10.1016/j.proeng.2015.08.262.
  • Nicholls Robert J, Cazenave A. 2010. Sea-level rise and its impact on coastal zones. Science. 328(5985):1517–1520. doi: 10.1126/science.1185782.
  • Oomkens E. 1974. Lithofacies relations in the late quaternary Niger Delta complex. Sedimentology. 21(2):195–222. doi: 10.1111/j.1365-3091.1974.tb02056.x.
  • Oyedotun TDT. 2014. Shoreline geometry: DSAS as a tool for historical trend analysis. British Society for Geomorphology.
  • Oyegun CU. 1991. Spatial and seasonal aspects of shoreline changes at Forcados Beach, Nigeria. Earth Surf Processes Landf. 16(4):293–305. doi: 10.1002/esp.3290160404.
  • Reading HG, Collinson JD. 1996. Clastic coasts. sedimentary environments: processes, facies and stratigraphy. Blackwells, Cornwall.
  • Rolf D, Jorgen F, Broker HI, Zyserman Julio A, Holst AO. 1988. Littoral drift model for natural environments. Coast Eng Proc. 1.
  • Sexton WJ, Murday M. 1994. The morphology and sediment character of the coastline of Nigeria: the Niger Delta. J Coast Res. 10:959–977.
  • Shin B, Kim K. 2015. Estimation of shoreline change using high resolution images. Procedia Eng. 116:994–1001. doi: 10.1016/j.proeng.2015.08.391.
  • Stapor FW. 1971. Sediment budgets on a compartmented low-to-moderate energy coast in northwest Florida. Marine Geol. 10(2):1–7. doi: 10.1016/0025-3227(71)90047-8.
  • Stockdonf HF, Sallenger AH, List JH, Holman RA. 2002. Estimation of shoreline position and change using airborne topographic Lidar data. J Coast Res. 18:502–513.
  • Syvitski James PM, Vörösmarty Charles J, Kettner Albert J, Green P. 2005. Impact of humans on the flux of terrestrial sediment to the global coastal ocean. Science. 308(5720):376–380. doi: 10.1126/science.1109454.
  • Templin T, Popielarczyk D, Kosecki R. 2017. Application of low-cost fixed-wing UAV for inland lakes shoreline investigation. Pure Appl Geophys. 175(9):3263–3283. doi: 10.1007/s00024-017-1707-7.
  • Thieler ER, Himmelstoss EA, Zichichi JL, Ergul A. 2009. The Digital Shoreline Analysis System (DSAS) version 4.0 – an ArcGIS extension for calculating shoreline change (No. 2008-1278). US Geological Survey.
  • Tucker, C. 2004. ArcGIS 9: writing geoprocessing scripts with ArcGIS. ESRI.
  • Wang C, Zhao Y, Zou X, Xu X, Ge C. 2017. Recent changing patterns of the Changjiang (Yangtze River) Estuary caused by human activities. Acta Oceanol Sin. 36(4):87–96. doi: 10.1007/s13131-017-1017-z.
  • White K, Asmar HME. 1998. Monitoring changing position of coastlines using thematic mapper imagery, an example from the Nile Delta. Geomorphology. 29(1–2):93–105. doi: 10.1016/S0169-555X(99)00008-2.