Hindcast of a storm surge induced by local real wind fields in the Venice Lagoon

This paper investigates the effects of the wind blowing over the Venice Lagoon on both water level and circulation patterns. This has been carried out using a finite element hydrodynamic model coupled, for the first time, with experimental wind stress fields obtained from measurement of the horizont...

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Published inContinental shelf research Vol. 17; no. 12; pp. 1513 - 1538
Main Authors Zecchetto, S., Umgiesser, G., Brocchini, M.
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.10.1997
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Abstract This paper investigates the effects of the wind blowing over the Venice Lagoon on both water level and circulation patterns. This has been carried out using a finite element hydrodynamic model coupled, for the first time, with experimental wind stress fields obtained from measurement of the horizontal and vertical wind components. A spatially variable wind field is used to compute the wind stress directly from the velocity fluctuations. The hindcast concerns a case of strong northeasterly wind (Bora) which occurred from the 22nd to the 24th December 1994. Results are discussed both in terms of the spatial pattern of the storm surge levels and of the water exchanges with the open sea through the three lagoon inlets. There is an area of set-down in the north of the lagoon and of one of set-up in the south. At the centre of the lagoon, the effects of the storm surge are small. Results show that the set-down and set-up peaks occur in opposition of phase with the tide. In the south, this is related to the bottom friction term which enhances or reduces the magnitude of the storm surge elevation, whereas in the north the mechanisms of nonlinear interaction between tide and storm surge are less clear. Also, a positive surge difference is found between the western and the eastern lagoon, and between the water levels close to the inlets and the open sea, the latter triggering the sea-lagoon water exchanges. Analysis of the discharges through inlets and ideal transects (which divide the lagoon into three parts) shows that the spatial and temporal behaviors of the storm surge in the south and in the north of the lagoon are almost independent. During the entire period under study, the sea water inflow through the northern inlet was continuous and considerable compared with the outflow through the central and southern inlets. Interesting circulation patterns are found in the northern lagoon, whilst water dynamics in the southern lagoon are essentially driven by the outflow at the meridional inlet. Comparison of these results with the hindcast obtained using spatially constant wind stress fields shows the importance of the wind spatial gradients in determining the storm surge level patterns.
AbstractList This paper investigates the effects of the wind blowing over the Venice Lagoon on both water level and circulation patterns. This has been carried out using a finite element hydrodynamic model coupled, for the first time, with experimental wind stress fields obtained from measurement of the horizontal and vertical wind components. A spatially variable wind field is used to compute the wind stress directly from the velocity fluctuations. The hindcast concerns a case of strong northeasterly wind (Bora) which occurred from the 22nd to the 24th December 1994. Results are discussed both in terms of the spatial pattern of the storm surge levels and of the water exchanges with the open sea through the three lagoon inlets. There is an area of set-down in the north of the lagoon and of one of set-up in the south. At the centre of the lagoon, the effects of the storm surge are small. Results show that the set-down and set-up peaks occur in opposition of phase with the tide. In the south, this is related to the bottom friction term which enhances or reduces the magnitude of the storm surge elevation, whereas in the north the mechanisms of nonlinear interaction between tide and storm surge are less clear. Also, a positive surge difference is found between the western and the eastern lagoon, and between the water levels close to the inlets and the open sea, the latter triggering the sea-lagoon water exchanges. Analysis of the discharges through inlets and ideal transects (which divide the lagoon into three parts) shows that the spatial and temporal behaviors of the storm surge in the south and in the north of the lagoon are almost independent. During the entire period under study, the sea water inflow through the northern inlet was continuous and considerable compared with the outflow through the central and southern inlets. Interesting circulation patterns are found in the northern lagoon, whilst water dynamics in the southern lagoon are essentially driven by the outflow at the meridional inlet. Comparison of these results with the hindcast obtained using spatially constant wind stress fields shows the importance of the wind spatial gradients in determining the storm surge level patterns.
This paper investigates the effects of the wind blowing over the Venice Lagoon on both water level and circulation patterns. This has been carried out using a finite element hydrodynamic model coupled, for the first time, with experimental wind stress fields obtained from measurement of the horizontal and vertical wind components. A spatially variable wind field is used to compute the wind stress directly from the velocity fluctuations. The hindcast concerns a case of strong northeasterly wind (Bora) which occurred from the 22nd to the 24th December 1994. Results are discussed both in terms of the spatial pattern of the storm surge levels and of the water exchanges with the open sea through the three lagoon inlets. There is an area of set-down in the north of the lagoon and of one of set-up in the south. At the centre of the lagoon, the effects of the storm surge are small. Results show that the set-down and set-up peaks occur in opposition of phase with the tide. In the south, this is related to the bottom friction term which enhances or reduces the magnitude of the storm surge elevation, whereas in the north the mechanisms of nonlinear interaction between tide and storm surge are less clear. Also, a positive surge difference is found between the western and the eastern lagoon, and between the water levels close to the inlets and the open sea, the latter triggering the sea-lagoon water exchanges. Analysis of the discharges through inlets and ideal transects (which divide the lagoon into three parts) shows that the spatial and temporal behaviors of the storm surge in the south and in the north of the lagoon are almost independent. During the entire period under study, the sea water inflow through the northern inlet was continuous and considerable compared with the outflow through the central and southern inlets. Interesting circulation patterns are found in the northern lagoon, whilst water dynamics in the southern lagoon are essentially driven by the outflow at the meridional inlet. Comparison of these results with the hindcast obtained using spatially constant wind stress fields shows the importance of the wind spatial gradients in determining the storm surge level patterns.
Storm surge levels were studied in the Venice lagoon by coupling experimental wind fields with a hydrodynamic model. Wind data resolved in 3 dimensions were obtained from 5 measuring stations. A regular gridded wind field was computed using objective analysis methodologies and converted into wind stresses. The hydrodynamic model was a horizontal 2-dimensional finite element model with spatially staggered finite elements to avoid numerical damping. The model was calibrated from level data measured by 14 tide gauges at the inlets and inside the lagoon during October 1986. Bottom friction was a variable parameter. The model was applied to a strong northeasterly wind on 22-24 December 1994. Results were considered in terms of the spatial pattern of the storm surge levels and of water exchanges with the open sea through the 3 inlets. The effects at the centre of the lagoon were small, while in the southern lagoon the surge levels reached a positive peak of 55 cm and in the northern lagoon a negative peak of 45 cm. The peaks occurred in phase opposition with the tide. In the south the rise was in phase and correlated with the bottom friction while the opposite was true in the north. The positive peak occurred at low tide when the high bottom friction favoured water accumulation. In the north the mechanisms of nonlinear interaction between tide and storm surge were less clear. Analysis of the discharges showed that the spatial and temporal behaviour of the storm surge in the north and south were almost independent. During the whole period, seawater inflow through the northern inlet was considerable and continuous compared with the outflows through the central and southern inlets. Comparison of model simulations and measured values showed the importance of wind spatial gradients in determining the storm surge level patterns. There are 35 references.
Author Brocchini, M.
Umgiesser, G.
Zecchetto, S.
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Snippet This paper investigates the effects of the wind blowing over the Venice Lagoon on both water level and circulation patterns. This has been carried out using a...
Storm surge levels were studied in the Venice lagoon by coupling experimental wind fields with a hydrodynamic model. Wind data resolved in 3 dimensions were...
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StartPage 1513
Title Hindcast of a storm surge induced by local real wind fields in the Venice Lagoon
URI https://dx.doi.org/10.1016/S0278-4343(97)00023-X
https://search.proquest.com/docview/13624045
https://search.proquest.com/docview/16274566
Volume 17
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