Flooding is a major hazard in the Midwest, accounting for more economic damage than any other hazard. Recent major flooding events in Iowa have created a greater need for the monitoring of floodplain areas. The objective of this paper is to evaluate flood risk through the synthesis of geospatial data with flood maps for thirteen Hydrologic Unit Codes (HUC 8s) in southwest Iowa. Using ArcGIS, exposure of ecosystem services, population, and environmental hazards can be located within the 10, 50, 100, 500 year floodplains. Additionally, the effectiveness of hydric soils as a floodplain proxy is evaluated using SSURGO soil data. An overview of FEMA HAZUS-MH 2.0 flood loss estimation software is provided and a model of the East Nishnabotna HUC 8 is evaluated. An alternative economic loss framework based on an NED land use raster and structure data is compared for the region. This study aims to provide beneficial floodplain information for development and regulation decisions.
Thesis
Flood risk analysis for the Iowa Statewide Floodplain Mapping Project
University of Iowa
Master of Science (MS), University of Iowa
Autumn 2012
DOI: 10.17077/etd.qcef8cxx
Free to read and download, Open Access
Abstract
Details
- Title: Subtitle
- Flood risk analysis for the Iowa Statewide Floodplain Mapping Project
- Creators
- Benjamin Samuel Reith - University of Iowa
- Contributors
- Larry J. Weber (Advisor)Nathan C. Young (Committee Member)Marian V.I. Muste (Committee Member)Witold F. Krajewski (Committee Member)
- Resource Type
- Thesis
- Degree Awarded
- Master of Science (MS), University of Iowa
- Degree in
- Civil and Environmental Engineering
- Date degree season
- Autumn 2012
- Publisher
- University of Iowa
- DOI
- 10.17077/etd.qcef8cxx
- Number of pages
- xii, 129 pages
- Copyright
- Copyright 2012 Benjamin Samuel Reith
- Language
- English
- Description illustrations
- col. illustrations, col. maps
- Description bibliographic
- Includes bibliographical references (pages 72-73).
- Academic Unit
- Civil and Environmental Engineering
- Record Identifier
- 9983777269802771
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