Book contents
- Frontmatter
- Contents
- List of contributors
- Preface
- 1 Definition and classification of estuaries
- 2 Estuarine salinity structure and circulation
- 3 Barotropic tides in channelized estuaries
- 4 Estuarine variability
- 5 Estuarine secondary circulation
- 6 Wind and tidally driven flows in a semienclosed basin
- 7 Mixing in estuaries
- 8 The dynamics of estuary plumes and fronts
- 9 Low-inflow estuaries: hypersaline, inverse, and thermal scenarios
- 10 Implications of estuarine transport for water quality
- Index
- References
2 - Estuarine salinity structure and circulation
Published online by Cambridge University Press: 06 July 2010
- Frontmatter
- Contents
- List of contributors
- Preface
- 1 Definition and classification of estuaries
- 2 Estuarine salinity structure and circulation
- 3 Barotropic tides in channelized estuaries
- 4 Estuarine variability
- 5 Estuarine secondary circulation
- 6 Wind and tidally driven flows in a semienclosed basin
- 7 Mixing in estuaries
- 8 The dynamics of estuary plumes and fronts
- 9 Low-inflow estuaries: hypersaline, inverse, and thermal scenarios
- 10 Implications of estuarine transport for water quality
- Index
- References
Summary
The horizontal salinity gradient
Estuaries show a great diversity of size, shape, depth, and forcing characteristics, but a general characteristic of estuaries is the presence of a horizontal salinity gradient (Fig. 2.1). Normally the salinity decreases from the ocean toward the head of the estuary due to freshwater input; in the case of inverse estuaries, the salinity increases in the landward direction due to excess evaporation (seeChapters 1 and 9). This salinity gradient is the key dynamical variable that makes estuaries different from any other marine or lacustrine environment. The horizontal salinity gradient is the key driving force for the estuarine circulation, which in turn plays a key role in maintaining salinity stratification in estuaries. The combined influence of the estuarine circulation and stratification determines the fluxes of salt and freshwater within the estuary, and their intensity varies with the strength of the freshwater inflow. Because of these dynamics, estuaries are often the most strongly stratified aquatic environments, but they also tend to have vigorous water and salt exchange, due to the estuarine circulation.
This chapter explores the coupled equations involving the estuarine circulation, stratification, salt flux and freshwater inflow. A major outcome of this analysis is to reveal the essential importance of horizontal salinity gradient in the estuarine circulation, stratification, and salt balance, but also to find that the horizontal salinity gradient ultimately depends on the strength of the freshwater outflow and the intensity of mixing by tidal currents.
- Type
- Chapter
- Information
- Contemporary Issues in Estuarine Physics , pp. 12 - 26Publisher: Cambridge University PressPrint publication year: 2010
References
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