Abstract
Prehistoric records of land-falling tropical cyclones further our understanding of the spatial and temporal variability of tropical cyclone activity and its relationship with global climatic changes. Here, we describe deposit stratigraphy and sedimentology resulting from overwash during Hurricane Ike, which made landfall on September 13th 2008, to provide a much needed modern analogue for paleo-hurricane deposits and evaluate the hurricane's influence on barrier stability. We compared the volume, grain size distribution, organic content and foraminiferal assemblages of washover deposits at three sites from Galveston and San Luis Islands, Texas that were up to 50. km west of Ike's landfall. Storm surge heights varied between 3.7 and 2.7. m with inland inundation extents of 330 to 113 m. At each of the study sites, Hurricane Ike eroded the shoreline and re-deposited a landward-thinning sand sheet between 0.02 and 0.28. m thick over short-grass prairie/salt-marsh soil. Shoreline erosion estimates suggest that only between 10 and 30% of eroded beach sediment is deposited on land as washover (net gain to barrier elevation), while the remainder is re-deposited subtidally or offshore, a potential net loss to the coastal sediment budget. The washover sediment was readily identifiable by abrupt changes in grain size, organic content, and buried in situ grasses. Foraminiferal assemblages within washover and short-grass prairie/salt-marsh sediments (when present) have similar assemblages, which are dominated by Ammonia spp. and Elphidium spp. These species are common to bay and nearshore environments of the Gulf of Mexico. Foraminiferal species Bolivina subaenariensis, Quinqueloculina seminulum and planktonic species are restricted to the washover deposits, which may suggest sediment provenance from inner shelf environments. © 2012 Elsevier B.V.
| Original language | English |
|---|---|
| Pages (from-to) | 180-189 |
| Journal | Geomorphology |
| Volume | 171-172 |
| DOIs | |
| Publication status | Published - 15 Oct 2012 |
| Externally published | Yes |
Bibliographical note
Publication details (e.g. title, author(s), publication statuses and dates) are captured on an “AS IS” and “AS AVAILABLE” basis at the time of record harvesting from the data source. Suggestions for further amendments or supplementary information can be sent to [email protected].Funding
We acknowledge and greatly appreciate the research funding provided by the National Science Foundation ( EAR-1024594 ), the WHOI Coastal Ocean Institute and the WHOI Postdoctoral Scholars Program . In addition, we gratefully thank Simon Engelhart (UPenn) and John Clark (UPenn) for their field assistance and Michaeline Nelson (Brown) for conducting grain size analysis and Jeff Donnelly for use of the WHOI coastal systems group laboratory. We also thank two anonymous reviewers for thoughtful and thorough comments, as well as the editor, Andrew Plater.
Research Keywords
- Foraminifera
- Geomorphic change
- Tropical cyclone
- Washover
Policy Impact
- Cited in Policy Documents
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