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Environmental Studies Journal
Volume 3, No. 1, 2024
Pages 49-55
DOI: 10.36108/esj/4202.30.0140
Evaluation of Flood Hazards and Impacts on the Environment: A Case Study of Louisville, Kentucky, USA, Using Remote Sensing and Geographic Information Systems (GIS)
ATAWODI Ayegba Raphael1, ZAKARIYA Daniel Wandiya2, EZEKIEL Taimanda Keren3, PETERS Mariam Ogbon4, SALAWU Simpa John4, YUSUF Hajara Oyiza4 , HAYATU, Sa’adatu Jauro4 and AYAKA, Mac Orngu5
1Bioresources Development Centre (BioDeC) Abuja, ICT Unit, National Biotechnology Research and Development Agency, Umaru Musa Yar’adua Expressway, Lugbe, Abuja – Nigeria
2Hayes Meridian Limited, 110 Ebitu-Ukiwe Street Jabi, Abuja
3National Centre for remote sensing, liberty dam road, Jos-east LGA, Jos Plateau state.
4Bio entrepreneurship and Consultancy Services Department, National Biotechnology Research and Development Agency, Umaru Musa Yar’adua Expressway, Lugbe, Abuja – Nigeria
5Federal Ministry of Housing, Abuja.
*Corresponding Author- Email: atawodiraphael@gmail.com Orcid No: https://orcid.org/0009-0008-5830-4767
Abstract
This study evaluates flood hazards and environmental impacts in Louisville, Kentucky, using remote sensing and Geographic Information Systems (GIS). A comprehensive flood risk assessment framework was developed utilizing various data, including: digital elevation model, land use/land cover, soil, boundary, stream network, precipitation, and road data. These data were used for delineation, discretization, parameterization, and simulation of flooding events-a flood hazard map identified high, medium, and low-risk areas, with infrastructure at risk evaluated. Notably, high-hazard regions are located near stream networks. The demographic analysis revealed that males reside predominantly in high and medium hazard areas, Ages 22-29 and 30-39 are concentrated in southwest high and medium-hazard regions; Younger populations (<5, 5-17, 18-21) and older adults (40-49, 50-64) reside in central and northwest medium and low-hazard areas. This study shows flood water distribution is influenced by bottlenecks and critical points during specific discharges, impacting local populations in the environment. Key findings inform flood risk management strategies, infrastructure planning, and emergency response initiatives, ultimately enhancing resilience in Louisville.
Keywords: Environment, Flood hazard, Geographic Information Systems (GIS), Louisville, Remote sensing, Risk assessment