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Juggling through Ghanaian urbanisation: flood hazard mapping of Kumasi

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More recently, driven by rapid and unguided urbanisation and climate change, Ghanaian cities are increasingly becoming hotspots for severe flood-related events. This paper reviews urbanisation dynamics in Ghanaian cities, and maps flood hazard zones and access to flood relief services in Kumasi, drawing insight from multi-criteria analysis and spatial network analysis using ArcGIS 10.2. Findings indicate that flood hazard zones in Kumasi have been created by natural (e.g., climate change) and anthropogenic (e.g., urbanisation) factors, and the interaction thereof. While one would have expected the natural factors to guide, direct and steer the patterns of urban development from flood hazard zones, the GIS analysis shows that anthropogenic factors, particularly urbanisation, are increasingly concentrating population and physical structures in areas liable to flooding in the urban environment. This situation is compounded by rapid land cover/use changes and widespread haphazard development across the city. Regrettably, findings show that urban residents living in flood hazard zones in Kumasi are also geographically disadvantaged in terms of access to emergency services compared to those living in well-planned neighbourhoods.

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Source: World Bank (2015)

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References

  • Adarkwa, K. K. (2012). The changing face of Ghanaian towns. African Review of Economics and Finance, 4(1), 1–29.

    Article  Google Scholar 

  • Ahadzie, D. K., & Proverbs, D. G. (2011). Emerging issues in the management of floods in Ghana. International Journal of Safety and Security Engineering, 1(2), 1–11.

    Article  Google Scholar 

  • Ahmed, A., & Dinye, R. D. (2012). Impact of land use activities on Subin and Aboabo rivers in kumasi metropolis. International Journal of Water Resources and Environmental Engineering, 4(7), 241–251.

    Google Scholar 

  • Amoako, C. (2012). Emerging issues in urban flooding in African cities—The case of Accra, Ghana. In 35th AFSAAP annual conference proceedings 2012. www.afsaap.org.au

  • Amoateng, P., Cobbinah, P. B., & Owusu-Adade, K. (2013). Managing physical development in peri-urban areas of Kumasi, Ghana: A case of Abuakwa. Journal of Urban and Environmental Engineering, 7(1), 96–109.

    Article  Google Scholar 

  • Appiah, E. (2015). NADMO distributes relief items to flood victims. July 5, 2015, Myjoyonline.com: http://www.myjoyonline.com/news/2015/june-5th/nadmo-distributes-relief-items-to-flood-victims.php.

  • Armah, F. A., Yawson, D. O., Yengoh, G. T., Odoi, J. O., & Afrifa, E. K. A. (2010). Impact of floods on livelihoods and vulnerability of natural resource dependent communities in Northern Ghana. Water, 2(2), 120–139.

    Article  Google Scholar 

  • Campion, B. B., & Venzke, J. F. (2013). Rainfall variability, floods and adaptations of the urban poor to flooding in Kumasi, Ghana. Natural Hazards, 65(3), 1895–1911.

    Article  Google Scholar 

  • Cobbinah, P. B., & Anane, G. K. (2015). Climate change adaptation in rural Ghana: Indigenous perceptions and strategies. Climate and Development,. doi:10.1080/17565529.2015.1034228.

    Google Scholar 

  • Cobbinah, P. B., & Erdiaw-Kwasie, M. O. (2016). Urbanisation in Ghana: Insights and implications for urban governance. In U. G. Benna & S. B. Garba (Eds.), Population growth and rapid urbanisation in the developing world (pp. 82–104). Hershey, United States of America: IGI Global.

    Chapter  Google Scholar 

  • Cobbinah, P. B., Erdiaw-Kwasie, M. O., & Amoateng, P. (2015a). Rethinking sustainable development within the framework of poverty and urbanisation in developing countries. Environmental Development, 13, 18–32. doi:10.1016/j.envdev.2014.11.001.

    Article  Google Scholar 

  • Cobbinah, P. B., Erdiaw-Kwasie, M. O., & Amoateng, P. (2015b). Africa’s urbanisation: Implications for sustainable development. Cities, 47, 62–72.

    Article  Google Scholar 

  • Cobbinah, P. B., & Korah, P. I. (2015). Religion gnaws urban planning: the geography of places of worship in Kumasi, Ghana. International Journal of Urban Sustainable Development,. doi:10.1080/19463138.2015.1074581.

    Google Scholar 

  • Cohen, B. (2006). Urbanization in developing countries: Current trends, future projections, and key challenges for sustainability. Technology in Society, 28(1–2), 63–80.

    Article  Google Scholar 

  • Comber, A., Brunsdon, C., & Green, E. (2008). Using a GIS-based network analysis to determine urban greenspace accessibility for different ethnic and religious groups. Landscape and Urban Planning, 86(1), 103–114.

    Article  Google Scholar 

  • Davoudi, S., Shaw, K., Haider, L. J., Quinlan, A. E., Peterson, G. D., Wilkinson, C., et al. (2012). Resilience: A bridging concept or a dead end? Planning Theory and Practice, 13(2), 299–333. doi:10.1080/14649357.2012.677124.

    Article  Google Scholar 

  • Dawod, G. M., Mirza, M. N., Al-Ghamdi, K. A., & Elzahrany, R. A. (2014). Projected impacts of land use and road network changes on increasing flood hazards using a 4D GIS: A case study in Makkah metropolitan area, Saudi Arabia. Arabian Journal of Geoscience, 7(3), 1139–1156.

    Article  Google Scholar 

  • Derry, J. D., Afukaar, F. K., Donkor, P., & Mock, C. (2007). Study of vehicle speeds on a major highway in Ghana: Implication for monitoring and control. Traffic Injury Prevention, 8(2), 142–146. doi:10.1080/15389580601100944.

    Article  Google Scholar 

  • ESRI. (2006). ArcGIS network analyst tutorial. Redlands, USA: Environmental Systems Research Institute (ESRI).

    Google Scholar 

  • Estoque, R. C., & Murayama, Y. (2010). Suitability analysis for beeking sites in La Union, Phillippines, using GIS and multi-criteria evaluation techniques. Research Journal of Applied Science, 5(3), 242–253.

    Article  Google Scholar 

  • Fernandez, D. S., & Lutz, M. A. (2010). Urban flood hazard zoning in Tucumán Province, Argentina, using GIS and multicriteria decision analysis. Engineering Geology, 111, 90–98.

    Article  Google Scholar 

  • Ghana News. (2015). Prez promises to fix drainage problem in Accra. Retrieved July 6, 2015, from Graphic.com.gh: http://ghnews360.com/news-page.php?id=1416.

  • Ghana Statistical Service (GSS). (2012). 2010 Population and housing census. Summary report of final results. Accra, Ghana: Sakoa Press Limited.

  • Gupta, J., Termeer, C., Klostermann, J., Meijerink, S., Brink, M. V. D., Jong, P., et al. (2010). The adaptive capacity wheel: A method to assess the inherent characteristics of institutions to enable the adaptive capacity of society. Environmental Science and Policy, 13(6), 459–471. doi:10.1016/j.envsci.2010.05.006.

    Article  Google Scholar 

  • Jha, K. A., Bloch, R., & Lamond, J. (2011). Cities and flooding: A guide to integrated urban flood risk management for the 21st century. Washington, DC: The World Bank.

    Google Scholar 

  • Joerin, F., Theriault, M., & Musy, A. (2001). Using GIS and outranking multicriteria analysis for land suitability assessment. International Journal of Geographical Information Science, 15(2), 153–174.

    Article  Google Scholar 

  • Karley, N. K. (2009). Flooding and physical planning in urban areas in West Africa: Situational analysis of Accra, Ghana. Theoritical and Empirical Research in Urban Management, 4(13), 25–41.

    Google Scholar 

  • Korah, P. I., & López, F. M. J. (2015). Mapping flood vulnerable areas in Quetzaltenango, Guatemala. Journal of Environment and Earth Science, 5(6), 132–143.

    Google Scholar 

  • Kumasi Metropolitan Assembly. (2014). October 7, 2014, http://www.kma.ghanadistricts.gov.gh/?arrow=atd&_=6&sa=5490.

  • Lwasa, S. (2014). Managing African urbanization in the context of environmental change. Interdisciplina, 2(2), 263–280.

    Google Scholar 

  • Mendas, A., & Delali, A. (2012). Integration of multicriteria decision analysis in gis to develop land suitability for agriculture: Application to durum wheat cultivation in the region of Mleta in Algeria. Computers and Electronics in Agriculture, 83, 117–126. doi:10.1016/j.compag.2012.02.003.

    Article  Google Scholar 

  • Naab, F., Dinye, R., & Kasange, R. (2013). Urbanisation and its impacts on agricultural lands in growing cities in developing countries: A cast study of Tamale in Ghana. Modern Social Science Journal, 2(2), 256–287.

    Google Scholar 

  • Nwaka, G. (2005). Planning for sustainable cities in Africa. In O. Ukaga & O. G. Afoaku (Eds.), Sustainable development in Africa. A multifaceted challenge. Asmara, Eriteria: Africa World Press, Inc.

    Google Scholar 

  • Okyere, C. Y., Yacouba, Y., & Gilgenbach, D. (2012). The problem of annual occurence of floods in Accra: An integration of hydrological, economic and political perspective. Bonn: Universitat Bonn.

    Google Scholar 

  • Oppong, B. K. (2011). Environmental hazards in Ghanaian Cities: The incidence of annual floods along the Aboabo river in the Kumasi Metropolitan Area (KMA) of the Ashanti Region of Ghana. A thesis submitted to the Department of Geography and Rural Development. Kumasi: Kwame Nkrumah University of Science and Technology.

  • Ouma, Y. O., & Tateishi, R. (2014). Urban flood vulnerability and risk mapping using integrated multi-parametric AHP and GIS: Methodological overview and case study Assessment. Water, 6, 1515–1545.

    Article  Google Scholar 

  • Owusu-Ansah, J. K. (2015). The influences of land use and sanitation infrastructure on flooding in Kumasi. Ghana. GeoJournal, 81(4), 555–570. doi:10.1007/s10708-015-9636-4.

    Article  Google Scholar 

  • Oyesiku, O. K. (1997). The new city as a physical planning strategy: The Conceptual Understanding. Nigerian Journal of Social and Management Sciences, 1(1), 76–101.

    Google Scholar 

  • Pradhan, B. (2009). Flood susceptible mapping and risk area delineation using logistic regression, GIS and remote sensing. Journal of Spatial Hydrology, 9(2), 1–18.

    Google Scholar 

  • Restemeyer, B., Woltjer, J., & Brink, M. V. D. (2015). A strategy-based framework for assessing the flood resilience of cities—A Hamburg case study. Planning Theory and Practice, 16(1), 45–62.

    Article  Google Scholar 

  • Riad, P. H. S., Billib, M., Hassan, A. A., Salam, M. A., & Nour El Din, M. (2011). Application of the overlay weighted model and boolean logic to determine the best locations for artificial recharge of groundwater. Journal of Urban and Environmental Engineering, 5(2), 57–66. doi:10.4090/juee.2011.v5n2.057066.

    Article  Google Scholar 

  • Roy, A. (2005). Urban informality: Toward an epistemology of planning. Journal of the American Planning Association, 71(2), 147–158. doi:10.1080/01944360508976689.

    Article  Google Scholar 

  • Scott, M., White, I., Kuhlicke, C., Steinführer, A., Sultana, P., Thompson, P., et al. (2013). Living with flood risk/the more we know, the more we know we don’t know. Planning Theory and Practice, 14(1), 103–140. doi:10.1080/14649357.2012.761904.

    Article  Google Scholar 

  • Star Fm. (2015). Stop the empty promises and fix flood issuesBishops to Mahama. July 6, 2015, http://www.starrfmonline.com/1.4273297.

  • Uddin, K., Gurung, D. R., Giriraj, A., & Shrestha, B. (2013). Application of remote sensing and GIS for flood hazard management: A case study from Sindh Province, Pakistan. American Journal of Geographic Information System, 2(1), 1–5.

    Google Scholar 

  • UNDESA/PD. (2012). World urbanisation prospects: The 2011 revision. NY: United Nations.

    Google Scholar 

  • UNHABITAT. (2012). State of the world’s cities 2010/2011: Bridging the urban divide. London: Earthscan.

    Google Scholar 

  • UNHABITAT. (2014). State of African cities 2014: Re-imagining sustainable urban transitions. Nairobi: UNHABITAT.

    Google Scholar 

  • United Nations. (2014). World urbanization prospects: The 2014 revision, highlights. New York: United Nations, Department of Economic and Social Affairs, Population Division.

    Google Scholar 

  • Van der Brugge, R., Rotmans, J., & Loorbach, D. (2005). The transition in Dutch water management. Regional Environmental Change, 5(4), 164–176. doi:10.1007/s10113-004-0086-7.

    Article  Google Scholar 

  • White, I. (2008). The absorbent city: Urban form and flood risk management. In Proceedings of the institution of civil engineers (pp. 151–161).Urban Design and Planning 161. doi: 10.1680/udap.2008.161.4.151.

  • Woltjer, J., & Al, N. (2007). Integrating water management and spatial planning. Journal of the American Planning Association, 73(2), 211–222. doi:10.1080/01944360708976154.

    Article  Google Scholar 

  • World Bank. (2015). Rising through cities in Ghana: Ghana urbanization review overview report. Washington, DC: World Bank.

    Google Scholar 

  • Wu, S., Yarnal, B., & Fisher, A. (2002). Vulnerability of coastal communities to sea-level rise: A case study of cape may county, New Jersey. USA Climate Research, 22(3), 255–270.

    Article  Google Scholar 

  • Yankson, P. W. K., & Bertrand, M. (2012). Challenges of Urbanisation in Ghana. In E. A. Schandorf, P. W. K. Yankson, & M. Bertrand (Eds.), The mobile city of Accra: Urban families, housing and residential practices. Dakar: CODESRIA.

    Google Scholar 

  • Yeboah, E., & Shaw, D. P. (2013). Customary land tenure practices in Ghana: examining the relationship with landuse planning delivery. International Development Planning Review. doi:10.3828/idpr.2013.3.

    Google Scholar 

  • Zevenbergen, C. A., Cashman, N., Evelpidou, E., Garvin, P. S., & Ashley, R. (2012). Urban flood management. Abingdon: Taylor and Francis Group.

    Google Scholar 

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Correspondence to Prosper Issahaku Korah.

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Korah, P.I., Cobbinah, P.B. Juggling through Ghanaian urbanisation: flood hazard mapping of Kumasi. GeoJournal 82, 1195–1212 (2017). https://doi.org/10.1007/s10708-016-9746-7

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