25 research outputs found

    MULTI – HAZARD VULNERABILITY MAPPING: AN EXAMPLE OF AKWA IBOM STATE, NIGERIA

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    Vulnerability mapping has emerged as one of the mitigation strategies in the midst of increasing losses due to environmental hazards in recent years. It generally improves the ability of policy makers to promote disaster reduction thereby protecting inhabitants and their livelihoods, the natural environment, infrastructure and property. Although vulnerability maps can be created manually, they are now mostly created with the assistance of computer technology called Geographic Information System (GIS). Mapping the vulnerability of the region in a GIS environment allows for ease of data editing, integration, analysis, storage and visualization. The resultant product will help to identify, and locate sensitive populations so that emergency managers can customize disaster relief efforts based on needs determined by the identified vulnerability. Vulnerability of the study area was conceptualized in a GIS environment as a combination of Exposure, Sensitivity, and Adaptive capacity maps. The three surfaces for each hazard were generated and combined using the Single Output function of Arcmap 9. The study area is Akwa Ibom State located in the South East Coast of Nigeria, an area prone to sea level rise, coastal erosion and flooding. The result shows that the high and moderate zones are concentrated in the North East and Southern parts of the state while the low zones can be found in the North West. As the state borders the Atlantic Ocean, the study confirms the fact that the southern parts of the state are highly vulnerable to climate change related hazards

    MULTI – HAZARD VULNERABILITY MAPPING: AN EXAMPLE OF AKWA IBOM STATE, NIGERIA

    Get PDF
    Vulnerability mapping has emerged as one of the mitigation strategies in the midst of increasing losses due to environmental hazards in recent years. It generally improves the ability of policy makers to promote disaster reduction thereby protecting inhabitants and their livelihoods, the natural environment, infrastructure and property. Although vulnerability maps can be created manually, they are now mostly created with the assistance of computer technology called Geographic Information System (GIS). Mapping the vulnerability of the region in a GIS environment allows for ease of data editing, integration, analysis, storage and visualization. The resultant product will help to identify, and locate sensitive populations so that emergency managers can customize disaster relief efforts based on needs determined by the identified vulnerability. Vulnerability of the study area was conceptualized in a GIS environment as a combination of Exposure, Sensitivity, and Adaptive capacity maps. The three surfaces for each hazard were generated and combined using the Single Output function of Arcmap 9. The study area is Akwa Ibom State located in the South East Coast of Nigeria, an area prone to sea level rise, coastal erosion and flooding. The result shows that the high and moderate zones are concentrated in the North East and Southern parts of the state while the low zones can be found in the North West. As the state borders the Atlantic Ocean, the study confirms the fact that the southern parts of the state are highly vulnerable to climate change related hazards

    An assessment of the impact of flood events in Makurdi, Nigeria

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    Flood disaster is not a recent phenomenon in Makurdi people in the town have been experiencing its destructive tendencies which are sometimes enormous. Using information sourced from questionnaire, personal observation, and archival records of National Inland Waterways Authority (NIWA) and newspaper reports; this paper examines flood events and its impacts on the people of Makurdi Town. A sample size of 400 respondents was drawn from flood prone areas of the town and the data was analyzed using descriptive statistics and a modified 4-point Likert Scale Rating System. The results of the analyses show that floods in Makurdi occur at the event of high rainfall intensity and mostly between September and October. When flooded, it takes 2-3 days for the flood water to recede depending on the magnitude of event. Apart from rainfall, other factors that influence flooding in the study area included lack of and poor drainage networks, dumping of wastes/refuse in drainage and water channels, and degree of built up areas leading to and increased runoffs. Although, personal properties and public infrastructure suffer all forms of flood damages, residents in the flood prone areas have remained on the basis of having no alternative, cultural ethnic affinity, family home where parent were buried and cheaper houses to rent. Identified flood mitigation measures include river dredging, raising house foundations and building of levees and embankment. Public enlightenment and necessary legislation and enforcement are recommended to checkmate activities aiding flooding. Keywords: Flooding, Hazards, Rainfall, Causes, Management measures and Infrastructur

    Multi Hazard Risk Assessment Using GIS Techniques in the Mbo Area of Nigeria

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    The study area Mbo and environs of South Eastern Nigeria are experiencing frequent inundation by flood and erosion hence this research is aimed at generating vulnerability hazard and risk maps as decision support tools for policy makers. Rainfall, elevation, slope, soil association and hydrology were used as input layers to model the hazard layers while population density, vegetation and Normalized Difference Vegetation Index (NDVI) were used to model the vulnerability layers. Risk maps were generated weighting and combining the Hazard and vulnerability layers using the Single Output Map Algebra function of Arcmap soft ware. The final multi hazard risk map , derived by combining the flood and erosion risk maps shoed that 119.62km2 (15.12%), 193.94km2 (24.52%), 292.33km2 (36.95%) and 185.20km2 (23.41%). The study, using GIS, has revealed an objective way of understanding and dealing with the impact of hazards in the study area
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