Estimates of Natural Salinity and Hydrology in a Subtropical Estuarine Ecosystem: Implications for Greater Everglades Restoration

被引:0
作者
Frank E. Marshall
G. Lynn Wingard
Patrick A. Pitts
机构
[1] Cetacean Logic Foundation,
[2] Incorporated,undefined
[3] U.S. Geological Survey,undefined
[4] U.S. Fish and Wildlife Service,undefined
来源
Estuaries and Coasts | 2014年 / 37卷
关键词
Estuarine restoration; Subtropical estuary; Hydrology and salinity connectivity; Paleoecology; Statistical modeling; Florida Bay;
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中图分类号
学科分类号
摘要
Disruption of the natural patterns of freshwater flow into estuarine ecosystems occurred in many locations around the world beginning in the twentieth century. To effectively restore these systems, establishing a pre-alteration perspective allows managers to develop science-based restoration targets for salinity and hydrology. This paper describes a process to develop targets based on natural hydrologic functions by coupling paleoecology and regression models using the subtropical Greater Everglades Ecosystem as an example. Paleoecological investigations characterize the circa 1900 CE (pre-alteration) salinity regime in Florida Bay based on molluscan remains in sediment cores. These paleosalinity estimates are converted into time series estimates of paleo-based salinity, stage, and flow using numeric and statistical models. Model outputs are weighted using the mean square error statistic and then combined. Results indicate that, in the absence of water management, salinity in Florida Bay would be about 3 to 9 salinity units lower than current conditions. To achieve this target, upstream freshwater levels must be about 0.25 m higher than indicated by recent observed data, with increased flow inputs to Florida Bay between 2.1 and 3.7 times existing flows. This flow deficit is comparable to the average volume of water currently being diverted from the Everglades ecosystem by water management. The products (paleo-based Florida Bay salinity and upstream hydrology) provide estimates of pre-alteration hydrology and salinity that represent target restoration conditions. This method can be applied to any estuarine ecosystem with available paleoecologic data and empirical and/or model-based hydrologic data.
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页码:1449 / 1466
页数:17
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共 95 条
[11]  
Ishman SE(1999)The response of fishes to physiochemical changes in the mangroves of northeast Florida Bay Estuaries 22 500-517
[12]  
Dowsett HJ(2009)A simulation of historic hydrology and salinity in Everglades National Park: Coupling Paleoecologic Assemblage Data with Statistical Models Estuaries and Coasts 32 37-53
[13]  
Keyser D(2005)The use of conceptual ecological models to guide ecosystem restoration in south Florida Wetlands 25 795-809
[14]  
Waibel N(2006)Using soil profiles of seeds and molecular markers as proxies for sawgrass and wet prairie slough vegetation in Shark Slough, Everglades National Park Hydrobiologia 569 475-492
[15]  
Davis SM(2005)The ecological-societal underpinnings of Everglades restoration Frontiers in Ecology and the Environment 3 161-169
[16]  
Childers DL(1989)Freshwater flows from the Everglades to Florida Bay: a historical reconstruction based on fluorescent banding in the coral Bulletin of Marine Science 44 274-282
[17]  
Lorenz JL(1999)The use of proxy chemical records in coral skeletons to ascertain past environmental conditions in Florida Bay Estuaries 22 384-397
[18]  
Wanless HL(2000)Optimal linear combination of neural networks for improving classification performance IEEE Transactions on Pattern Analysis and Machine Intelligence 22 207-215
[19]  
Hopkins TA(2013)Correspondence of historic salinity fluctuations in Florida Bay, USA, to atmospheric variability and anthropogenic changes Journal of Paleoliminology 49 103-115
[20]  
Diaz RJ(1994)Wind and tide response in Florida Bay Bulletin of Marine Science 54 579-601