PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

The Application of GIS and Remote Sensing in a Spatiotemporal Analysis of Coastline Retreat in Rufisque, Senegal

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper is aimed at analyzing the phenomenon of shoreline retreat in the locality of Rufisque from 1978 to 2018 mainly using geospatial data and field visits. A set of Landsat images from different dates at 10 year intervals was then acquired through the United States Geological Survey platform and shoreline change analysis was run using the Digital Shoreline Analysis System. In addition to that desktop work, interactions with local residents allowed the determination of ongoing adaptation strategies actually in place to cope with coastal erosion. The study showed that Rufisque is subject to serious rates of erosion reaching −19.48 m/year from 1978–1988, close to −8 m/year from 1988–1998, −5.88 m/year from 1998–2008 and −6.67 m/year from 2008–2018. Beside that coastal erosion, it has been noticed that the coastline also experienced in some of its parts cases of accretion reaching 4.94 m/year for 1988–1998, 7.29 m/year from 1998–2008 and 7.68 m/year during the period 2008–2018. In terms of surfaces, Rufisque’ shoreline respectively lost 156.81 ha (1978–1988), 80.55 ha (1988–1998), 6.94 ha (1998–2008), 12.93 ha (2008–2018) and in the same note gained 2.86 ha (1988–1998), 32.51 ha (1998–2008) and 19.16 ha (2008–2018) attesting to the fact that the coastline is subject to both spatiotemporal changes. Finally, this study also reveals that while authorities’ reaction is taking place at much lower pace, local communities are actually using their ingenuity to put in place strategies to tackle coastal erosion.
Rocznik
Strony
55--80
Opis fizyczny
Bibliogr. 48 poz., fot., rys., tab., wykr.
Twórcy
  • University of Ibadan, Pan African University Institute of Life and Earth Sciences, Department of Environmental Management, Ibadan, Nigeria
  • University of Ibadan, Faculty of Social Sciences, Department of Geography, Ibadan, Nigeria
Bibliografia
  • [1] Cazenave A., Llovel W.: Contemporary Sea Level Rise. Annual Review of Marine Science, vol. 2, 2010, pp. 145–73. https://doi.org/10.1146/annurevmarine-120308-081105.
  • [2] Burkett V.R., Davidson M.A. (eds.): Coastal Impacts, Adaptation and Vulnerability: A Technical Input to the 2012 National Climate Assessment. Cooperative Report to the 2013 National Climate Assessment, 2012. https://www.researchgate.net/profile/S_Jeffress_Williams/publication/299976417_Physical_Climate_Forces/links/5af599a3a6fdcc0c030bbe0d/Physical-Climate-Forces.pdf [access: 11.08.2015].
  • [3] World Bank: Climate Risk and Adaptation Country Profile: Senegal. 2011. https://climateknowledgeportal.worldbank.org/sites/default/files/2018-10/wb_gfdrr_climate_change_country_profile_for_SEN.pdf[access: 4.07.2019].
  • [4] World Bank: Economic and spatial Study of the Vulnerability and Adaptation to Climate Change of Coastal areas in Senegal. 2013. http://documents1.worldbank.org/curated/en/537811468305337766/pdf/837830WP0P12030Box0382112B 00PUBLIC0.pdf [access: 5.08.2015].
  • [5] Direction de l’Environnement et des Etablissements Classés du Sénégal and Centre de suivie écologique: Rapport sur l’Etat de l’environnement au Sénégal. Ministère de l’Environnement et de la Protection de la Nature, 2005.
  • [6] Niang I., Dansokho M., Faye S., Gueye K., Ndiaye P.: Impacts of climate change on the Senegalese coastal zones: Examples of the Cap Vert peninsula and Saloum estuary. Global and Planetary Change, vol. 72, issue 4, 2010, pp. 294–301. https://doi.org/10.1016/j.gloplacha.2010.01.005.
  • [7] Drammeh F.: Assessing and adapting to climate change induced sea level rise on the Southern coastline of the Gambia. 2013. https://www.un.org/Depts/los/nippon/unnff_programme_home/fellows_pages/fellows_papers/Drammeh_1314_Gam.pdf [access: 14.06.2015].
  • [8] European Commission: Living with coastal erosion in Europe: sediment and space for sustainability. Part II Maps and statistics. Report Directorate General of Environment, European Commission, Brussels 2004.
  • [9] Morton R.A., Miller T., Moore L.J.: Historical shoreline changes along the US Gulf of Mexico: A summary of recent shoreline comparisons and analyses. Journal of Coastal Research, vol. 21, no. 4, 2004, pp. 704–709. https://doi.org/10.2112/04-0230.1.
  • [10] Morton R.A., Miller T.L.: National assessment of shoreline change: Part 2. Historical shoreline changes and associated coastal land loss along the U.S. Southeast Atlantic Coast. U.S. Geological Survey Open File Report, 2005-1401.
  • [11] Hapke C.J., Reid D., Richmond B.M., Ruggiero P., List J.: National Assessment of Shoreline Change. Part 3: Historical Shoreline Change and Associated Coastal Land Loss Along Sandy Shorelines of the California Coast. USGS Report, U.S. Department of the Interior, U.S. Geological Survey, 2016. https://pubs.usgs.gov/of/2006/1219/of2006-1219.pdf [access: 22.09.2020].
  • [12] Dillenburg S.R., Esteves L.S., Tomazelli L.J.: A critical evaluation of coastal erosion in Rio Grande do Sul, Southern Brazil. Annals of the Brazilian Academy of Science, vol. 76, no. 3, 2004, pp. 611–623. https://doi.org/10.1590/S0001-37652004000300014.
  • [13] Gopinath G., Seralathan P.: Rapid Erosion of the coast of Sagar island, West Bengal – India. Environmental Geology, vol. 48(8), pp. 1058–1067.https://doi.org/10.1007/s00254-005-0044-9.
  • [14] El-Hattab M.: Improving Coastal Vulnerability Index of the Nile Delta Coastal Zone, Egypt. Journal of Earth Science & Climatic Change vol. 6, issue 8, 2015, art. no. 293. https://doi.org/10.4172/2157-7617.1000293.
  • [15] Torresan S., Furlan E., Critto A., Michetti M., Marcomini A.: Egypt’s Coastal Vulnerability to Sea Level Rise and Storm Surge: Present and Future Conditions. Integrated Environmental Assessment and Management, vol. 16, issue 5, 2020, pp. 761–772. https://doi.org/10.1002/ieam.4280.
  • [16] Makota V., Sallema R., Mahika C.: Monitoring shoreline change using remote sensing and GIS: A case study of Kunduchi area, Tanzania. Western Indian Ocean Journal Marine Science, vol. 3, no. 1, 2004, pp. 1–10.
  • [17] Ozer P., Hountondji Y.-C., De Longueville F.: Evolution récente du trait de côte dans le golfe du Bénin. Exemples du Togo et du Bénin. Geo-Eco-Trop: Revue Internationale de Géologie, de Géographie et d’Écologie Tropicales, vol. 41, issue 3, 2017, pp. 529–541.
  • [18] Diallo S.: Evolution géomorphologique du littoral sur la Petite Côte à Rufisque. Mémoire de Maîtrise, Université de Dakar, Dakar 1982.
  • [19] Sall M.: Dynamique et morphogénèse actuelles au Sénégal Occidental. Université Louis Pasteur, Strasbourg 1982 [Ph.D. thesis].
  • [20] Niang-Diop I.: L’érosion côtière sur la petite côte du Sénégal à partir de l’ensemble de Rufisque: passé, présent et futur. Thèses et Documents Microfichés, 159, ORSTOM, Paris 1996. https://horizon.documentation.ird.fr/exl-doc/pleins_textes/pleins_textes_6/TDM/010008221.pdf [access: 17.07.2015].
  • [21] Dieye A.: Traitement informatique de photographies aériennes combiné à l’utilisation de systèmes d’information géographique pour l’étude de la ligne de rivage entre Rufisque et Bel Air durant la période 1968–1997. Mémoire de D.E.A en Géosciences: Environnements sédimentaires, Université Cheikh Anta DIOP de Dakar, Dakar 2000.
  • [22] Guerin K.: Dynamique du littoral sableux de Tiaroye à Bargny (Baie de Gorée – Sénégal). Mémoire de Maîtrise de Géographie, Université de Paris, Sorbonne, Paris 2003.
  • [23] Agence Nationale de la Statistique et de la Demographie: Recensement Général de Population et de l’Habitat, de l’Agriculture et de l’Elevage. 2013. https://www.ansd.sn/ressources/RGPHAE2013/ressources/doc/pdf/RGPHAE-Rapport-regional_DAKAR_vf.pdf [access: 10.12.2020].
  • [24] Dubresson A.: L’espace Dakar Rufisque en devenir: de l’héritage urbain à la croissance industrielle. ORSTOM, Paris 1979. https://horizon.documentation.ird.fr/exl-doc/pleins_textes/pleins_textes_5/pt5/travaux_d/00855.pdf [access: 12.06.2020].
  • [25] Diallo M.: Etude du centre ville de Rufisque, mutations fonctionnelles et Caractéristiques du paysage urbain. 2009. https://www.institut-numerique.org/etude-du-centre-ville-de-rufisque-caracteristiques-du-paysage-urbain-et-muta tions-fonctionnelles-4ffaa47f679cc/amp. [access: 12.06.2020].
  • [26] Roche A., Bosc Ch., Chandelier L., Lagnous R.: Apport de l’imagerie satellitaire pour le suivi du trait de côte. [in:] XIIIèmes Journées Nationales Génie Côtier – Génie Civil, Dunkerque, 2–4 juillet 2014, Editions Paralia CFL, 2014, pp. 621–628. https://doi.org/10.5150/jngcgc.2014.068.
  • [27] Wicaksono A., Wicaksono P., Khakhim N., Farda N., Marfai M.A.: Semi automatic shoreline extraction using water index transformation on Landsat 8 OLI imagery in Jepara Regency. [in:] Sixth International Symposium on LAPAN IPB Satellite, vol. 11372, SPIE, 2019, pp. 500–509. https://doi.org/10.1117/12.2540967.
  • [28] Goneri L.C., Cazenave A., Garcin M., Becker M., Donato V. et al.: L’elevation recente du niveau marin et l’erosion cotiere: le cas d’iles oceaniques du Pacique. Géosciences, 2011, pp. 92–99. https://hal-brgm.archives-ouvertes.fr/hal-00656782/document [access: 8.08.2020].
  • [29] Grenier A., Dubois J.-M.M.: Évolution des côtes aux Îles de la Madeleine. [in:] Dubois J.-M.M., Gagnon J. (eds.), Les Îles de Ia Madeleine: un pays à dé couvrir, Info GéoGraphes, no. 1 (numéro spécial), 1992, pp. 59–64.
  • [30] Mishra M., Sudarsan D., Kar D., Naik A., Das P., Santos C., da Silva R.: The development and research trend of using dsas tool for shoreline change analysis: A scientometric analysis. Journal of Urban and Environmental Engineering, vol. 14, 2020, pp. 69–77. https://doi.org/10.4090/juee.2020.v14n1.069077.
  • [31] Dewidar K.M., Frihy O.E.: Pre and post beach response to engineering hard structures using Landsat time series at the northwestern part of the Nile delta, Egypt. Journal of Coastal Conservation, vol. 11, 2008, pp. 133–142. https://doi.org/10.1007/s11852-008-0013-z.
  • [32] Moisan M., De La Torre Y.: Evolution du trait de côte en Guyane: Caraterisation dynamique cotiere entre 1950 et 2013 à l’echelle regionale. Rapport final BRGM/RP-62904-FR, 2014.
  • [33] Valère D.E.M., Fatoumata B., Jeanne K.M., Jean-Baptiste K.A., Brice Hervé M.A., Kouamé A.K., André T.J., Patricia Y.: Cartographie De La Dynamique Du Trait De Côte A Grand Lahou: Utilisation De L’outil « Digital Shoreline Analysis System (Dsas)». European Scientific Journal, vol. 12, 2016, pp. 327–335. https://doi.org/10.19044/esj.2016.v12n36p327.
  • [34] Kuleli T., Bayazıt Ş.: Coastline change detection by using Digital Shoreline Analysis System (DSAS) and Remote Sensing. [in:] 3rd International Conference on Engineering Technology and Applied Sciences. Vol. 1,Üsküp, Macedonia, 2018, pp. 488–494.
  • [35] Thinh N., Hens L.: A Digital Shoreline Analysis System (DSAS) applied on mangrove shoreline changes along the Giao Thuy Coastal area (Nam Dinh, Vietnam) during 2005–2014. Vietnam Journal of Earth Sciences, vol. 39, 2017, pp. 87–96. https://doi.org/10.15625/0866-7187/39/1/9231.
  • [36] Thior M., Sane T., Sy O., Descroix L., Ba B.D., Solly B., Mendy V.: Analyse Spatiale de l’évolution du Trait de Côte Autour de l’embouchure du Fleuve Casamance (Sénégal) de 1968 à 2017, à Partir de l’outil DSAS. European Scientific Journal, vol. 15, no. 9, 2019, pp. 106–130. https://doi.org/10.19044/esj.2019.v15n9p106.
  • [37] Koulibaly C.T., Ayoade J.O.: Coastal Vulnerability Assessment of Saint Louis/Senegal to Sea Level Rise. Global Scientific Journals, vol. 9, issue 1, 2021, pp. 213–238.
  • [38] Bakhoum P., Diaw A., Sambou B.: A peninsula in coastal erosion? Dakar, the Senegalese capital city facing the sea level rise in the context of climate change. Environmental and Water Sciences, Public Health and Territorial Intelligence Journal, vol. 2, no. 1, 2018, pp. 91–108. https://doi.org/10.48421/IMIST.PRSM/ewashti-v2i1.11303.
  • [39] Biondo M., Buosi C., Trogu D., Mansfield H., Vacchi M., Ibba A., Porta M., Ruju A., De Muro S.: Natural vs. Anthropic Influence on the Multidecadal Shoreline Changes of Mediterranean Urban Beaches: Lessons from the Gulf of Cagliari (Sardinia). Water, vol. 12, 2020, art. no. 3578. https://doi.org/10.3390/w12123578.
  • [40] Armah F.: GIS based Assessment of Short Term Shoreline Changes in the Coastal Erosion Sensitive Zone of Accra, Ghana. Research Journal of Environmental Sciences, vol. 5, issue 7, 2011, pp. 643–654. https://doi.org/10.3923/rjes.2011.643.654.
  • [41] Blivi A.: Vulnérabilité de la côte togolaise à l’élévation du niveau marin: une analyse de prévision et d’impact, in Le tricentenaire d’Aného et du pays Guin. [in:] Le tricentenaire d’Aného et du pays guin: Société, culture et développement en pays guin, Patrimoines, no. 11, Presse de l’U.B, 2001, pp. 643–660.
  • [42] Kwassi A.L.: Contribution à l’étude des populations rurales de la zone côtière du Togo. Mémoire de maîtrise, Université du Bénin, Lomé 2002.
  • [43] Niazi S.: Evaluation des impacts des changements climatiques et de l’élévation du niveau de la mer sur le littoral de Tétouan (Méditerranée occidentale du Maroc): Vulnérabilité et Adaptation. Université Mohammed-V de Rabat, Rabat 2007 [Ph.D. thesis].
  • [44] Ley de la Vega C., Favennec J., Gallego-Fernandez J., Pascual Vidal C.: Conservation des dunes côtières: restauration et gestion durables en Méditerranée occidentale. UICN, Gland, Suisse et Malaga, Espagne, 2012.
  • [45] Ministère de l’Écologie, du Développement durable et de l’Énergie: Dévelop per la connaissance et l’observation du trait de côte. Contribution nationale pour une gestion intégrée. Paris 2016.
  • [46] Paskoff R.: Côtes en danger. Coll. «Pratiques de la Géographie», Masson, Paris 1993.
  • [47] Cazes-Duvat V.: A beach vulnerability index and its implementation in the islands of Seychelles. Géomorphologie: relief, processus, environnement, no. 1, 2001, pp. 31–40. https://doi.org/10.3406/morfo.2001.1084.
  • [48] Suanez S., Fichaut B., Magne R, Ardhuin F., Corman D., Stephan P., Cariolet J.M.: Changements morphologiques et budget sédimentaire des formes fuyantes en queue de comète de l’archipel de Molène (Bretagne, France). Géomorphologie: relief, processus, environnement, no. 2, 2011, pp. 187–204. https://doi.org/10.4000/geomorphologie.9397.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-f55c1daf-5264-4018-970a-e9cfd86d2b67
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.