Modeled Sediment Availability, Deposition, and Decadal Land Change in Coastal Louisiana Marshes under Future Relative Sea Level Rise Scenarios

被引:0
|
作者
Eric D. White
Denise J. Reed
Ehab A. Meselhe
机构
[1] Coastal Protection and Restoration Authority of Louisiana Research & Planning Division,River
[2] University of New Orleans,Coastal Science and Engineering Department
[3] Tulane University,undefined
来源
Wetlands | 2019年 / 39卷
关键词
Sediment; Deposition; Numerical modeling; Sea level rise; Subsidence; Marsh collapse;
D O I
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中图分类号
学科分类号
摘要
The ability, or lack thereof, for wetlands in coastal Louisiana to maintain elevation capital has been well documented in the literature to be a function of local and regional factors as well as environmental conditions. The Integrated Compartment Model (ICM) framework developed for the state of Louisiana’s Coastal Master Plan models hydrologic, vegetation, and wetland elevation dynamics and captures regional and local dynamics of wetland elevation, inundation and sedimentation processes. It provides insights into the relative sensitivities of wetland evolution to environmental drivers under uncertain future environmental conditions. A systematic, and computationally efficient modeling exercise was conducted to test coastal marsh survival across a wide range of possible future relative sea level rise rate scenarios. Model results indicate a diverse response with respect to sediment deposition and marsh survival driven by regional subsidence rates and proximity to suspended sediment sources. Sediment poor regions of coastal Louisiana are particularly sensitive to relative sea level rise under all but the most optimistic of future sea level rise rates simulated. Coastal marshes with high sediment availability fare much better under most scenarios tested, despite high rates of relative sea level rise.
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页码:1233 / 1248
页数:15
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