Analysis of Flood Disaster Adaptation Strategies Among People of Guma Local Government Area, Benue State, Nigeria
DOI:
https://doi.org/10.52562/injoes.v2i2.415Keywords:
Adaptation Strategies, Flood Disaster, Flood MitigationAbstract
Abstract – One of the most important issues in flood risk management is finding a way to cope with uncertainties. Despite centuries of experience with flood management, flood disasters become more frequent and are increasing in severity due to climate change. This work examined flood disaster adaptation strategies among the people of Guma Local Government Area, Benue State. Data on the demographic characteristics of respondents, flood frequency, duration, and impact of flood disasters on people of the study area, as well as flood mitigation and adaptation strategies, were obtained using a questionnaire. A total of 380 respondents were sampled using random sampling. The data were analyzed using frequencies and percentages and presented in tables. Results revealed that the respondents are susceptible to the impact of flood disasters due to their socio-demographic characteristics. Furthermore, the results show that the frequency of flood disasters is biennial while its duration is between one to two weeks. Flood also impacts both directly and indirectly, involving mostly destruction of farm crops, and disruption of transportation. Lastly, the results show that the respondents mostly clear-filled/blocked drainages around them to mitigate the impact of flood disasters and many of the respondents construct wooden bridges across drainages/gutters in order to adapt to flooding in their areas. The study recommends that non-flood-sensitive economic activities should be embraced to mitigate the impact of flooding in the study area. There should also be public enlightenment and sensitization on the need to adopt both structural and nonstructural measures of adapting to flood disasters as climate change continues to trigger more severe, and frequent floods.
Downloads
References
ADB. (2015). Global increase in climate-related disasters [Evaluation independent].
Alaci, D. S. (2017). Promoting Climate Change Adaptation in Developing Countries: The Urban Planning Opportunities in Resilience Building. In Climate Change Adaptation in Africa (pp. 323-344). Springer, Cham. https://doi.org/10.1007/978-3-319-49520-0_20
Adger, W. N., Agrawala, S., Mirza, M. M. Q., Conde, C., O’Brien, K., Pulhin, J., Pulwarty, R., Smit, B., & Takahashi, K. (2007). Assessment of adaptation practices, options, constraints and capacity. In M. L. Parry, O. F. Canziani, J. P. Palutikof, P. J. van der Linden, & C. E. Hanson (Eds.), Climate change 2007: Impacts, adaptation and vulnerability. Contribution of Working Group II to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change (pp. 717-743). Cambridge University Press.
Bates, B. C., Kundzewicz, Z. W., & Palutikof, J. P. (2008). Climate change and water. Technical Paper of the Intergovernmental Panel on Climate Change, Geneva. Retrieved from: http://www.ecorresponsabilidad.es/pdfs/orcc/climate_change_and_water/02-front-matter.pdf
Brakenridge, G. R., Syvitski, J. P. M., Overeem, I., Higgins, S. A., Kettner, A. J., Stewart-Moore, J. A., & Westerhoff, R. (2013). Global mapping of storm surges and the assessment of coastal vulnerability. Natural hazards, 66(3), 1295-1312. https://doi.org/10.1007/s11069-012-0317-z
Etuonovbe, A. K. (2011). The devastating effect of flooding in Nigeria. In FIG working week (Vol. 201, No. 1). Marrakech, Morocco: Bridging the Gap between Cultures.
Guha-Sapir, D., & Hoyois, P. (2015). Estimating populations affected by disasters: A review of methodological issues and research gaps. Centre for Research on the Epidemiology of Disasters (CRED).
Hirabayashi, Y., Mahendran, R., Koirala, S., Konoshima, L., Yamazaki, D., Watanabe, S., Kim, H., & Kanae, S. (2013). Global flood risk under climate change. Nature climate change, 3(9), 816-821. https://doi.org/10.1038/nclimate1911
Hula, M. A., & Udoh, J. C. (2015). An assessment of the impact of flood events in Makurdi, Nigeria. Civil and Environmental Research, 7(10), 53-60.
Jongman, B., Hochrainer-Stigler, S., Feyen, L., Aerts, J. C., Mechler, R., Botzen, W. J., ... & Ward, P. J. (2014). Increasing stress on disaster-risk finance due to large floods. Nature Climate Change, 4(4), 264-268. https://doi.org/10.1038/nclimate2124
McCarthy, J. J., Canziani, O. F., Leary, N. A., Dokken, D. J., & White, K. S. (2001). Climate change 2001: Impacts, adaptation, and vulnerability. Contribution of Working Group II to the Third Assessment Report of the Intergovernmental Panel on Climate Change. Cambridge University Press.
Kundzewicz, Z. W., Kanae, S., Seneviratne, S. I., Handmer, J., Nicholls, R., Peduzzi, P., Mechler, R., Bouwer, L. M., Arnell, N., Mach, K., Muir-Wood, R., Brakenridge, G., Kron, W., Benito, G., Honda, Y., Takahashi, K., & Sherstyukov, B. (2013). Flood risk and climate change: global and regional perspectives. Hydrological Sciences Journal, 58(7), 1431-1452. https://10.1080/02626667.2013.857411
Miller, S., Muir-Wood, R., & Boissonnade, A. (2008). An exploration of trends in normalized weather-related catastrophe losses. Climate extremes and society, 12, 225-247.
Munich RE. (2015). Loss events worldwide 1980-2014 (1-10). Munich: Munich RE.
National Geographic. (2022). The influence of climate change on extreme environmental events. National Geographic Headquarters, 1145 17th Street NW, Washington, DC 20036.
Oladokun, V., & Proverbs, D. (2016). Flood risk management in Nigeria: A review of the challenges and opportunities. Flood Risk Management and Response, 6(3), 485-497.
Ologunorisa, T. E., & Tersoo, T. (2006). The changing rainfall pattern and its implication for flood frequency in Makurdi, Northern Nigeria. Journal of Applied Sciences and Environmental Management, 10(3), 97-102. https://doi.org/10.4314/jasem.v10i3.17327
Peduzzi, P., Dao, H., Herold, C., & Mouton, F. (2009). Assessing global exposure and vulnerability towards natural hazards: the Disaster Risk Index. Natural hazards and earth system sciences, 9(4), 1149-1159. https://doi.org/10.5194/nhess-9-1149-2009
Peduzzi, P., Chatenoux, B., Dao, H., de Bono, A., Herold, C., Kossin, J., Mouton, F., & Nordbeck, O. (2012). Global trends in tropical cyclone risk. Nature Climate Change, 2(4), 289-294. https://doi.org/10.1038/nclimate1410
Shabu, T., & Tyonum, T. E. (2013). Residents coping measures in flood prone areas of Makurdi Town, Benue State. Applied Ecology and Environmental Sciences, 1(6), 120-125. https://doi.org/10.12691/aees-1-6-4
Thomalla, F., Downing, T., Spanger?Siegfried, E., Han, G., & Rockström, J. (2006). Reducing hazard vulnerability: towards a common approach between disaster risk reduction and climate adaptation. Disasters, 30(1), 39-48. https://doi.org/10.1111/j.1467-9523.2006.00305.x
Twig, J., & Clderon, M. (2019). Building livelihood and community resilience, lessons from Somalia and Zimbabwe. ODI Working Paper 545.
UNISDR (2011). Global assessment report on disaster risk reduction. United Nations International Strategy for Disaster Reduction, Geneva, Switzerland.
USAID. (2014). Climate-Resilient Development: A Framework for Understanding and Addressing Climate Change. Washington, D.C., available at http://www.usaid.gov/climate/climate-resilient-development-framework.
Ward, R. C. (2008). Floods: A geographical perspective. Macmillan Press; London.
Weldegebriel, Z. B., & Amphune, B. E. (2017). Livelihood resilience in the face of recurring floods: an empirical evidence from Northwest Ethiopia. Geoenvironmental Disasters, 4(1), 1-19. https://doi.org/10.1186/s40677-017-0074-0
Downloads
Published
Issue
Section
License
Copyright (c) 2022 Solomon Gbaa

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.











