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- Title
Study of Atmospheric Forcing Influence on Harbour Water Renewal.
- Authors
Samper, Yaiza; Espino, Manuel; Liste, Maria; Mestres, Marc; Alsina, José M.; Sánchez-Arcilla, Agustín
- Abstract
In this study, we use observations and numerical simulations to investigate the effect of meteorological parameters such as wind and atmospheric pressure on harbour water exchanges. The modelled information is obtained from the SAMOA (Sistema de Apoyo Meteorológico y Oceanográfico de la Autoridad Portuaria) forecasting system, which is a high-resolution numerical model for coastal and port-scale forecasting. Based on the observations, six events with high renewal times have been proposed for analysis using the SAMOA model. Therefore, the conclusions of this study have been possible due to the combination of observed data from the measurement campaigns and the information provided by the model. The results show that days with higher renewal times coincide with favourable wind-direction events or increases in atmospheric pressure. After analysing these events using model results, it was observed that during these episodes, water inflows were generated, and in some cases, there was a negative difference in levels between inside and outside the harbour produced by atmospheric pressure variations. The latter may be due to the fact that the water in the harbour (having a lower volume) descends faster and, therefore, generates a difference in level between the exterior and the interior and, consequently, inflow currents that imply an increase in the renewal time. These results are a demonstration of how meteorological information (normally available in ports) can be used to estimate currents and water exchanges between ports and their outer harbour area.
- Subjects
SAMOA; CARTAGENA (Spain); HUELVA (Spain); WIND pressure; ATMOSPHERIC pressure; WATER currents; HARBORS; WATER pressure; PUBLIC service advertising
- Publication
Water (20734441), 2023, Vol 15, Issue 10, p1813
- ISSN
2073-4441
- Publication type
Article
- DOI
10.3390/w15101813