Sediment grain size and hydrodynamics in Mediterranean coastal lagoons: Integrated classification of abiotic parameters
Author(s) -
Emanuela Molinaroli,
Alessandro Sarretta,
Christian Ferrarin,
Emanuele Masiero,
Antonietta Specchiulli,
Stefano Guerzoni
Publication year - 2014
Publication title -
journal of earth system science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.444
H-Index - 52
eISSN - 0973-774X
pISSN - 0253-4126
DOI - 10.1007/s12040-014-0445-9
Subject(s) - bathymetry , sediment , geology , facies , structural basin , grain size , sedimentary rock , mediterranean climate , hydrology (agriculture) , spatial distribution , mediterranean sea , geomorphology , oceanography , geochemistry , ecology , geotechnical engineering , remote sensing , biology
Integrated classification maps were produced by combining sediment grain-size and hydrological data (water renewal time, WRT) from two Mediterranean lagoons, Lesina (LL) and Varano (LV), Italy.The geophysical characteristics of the two basins, derived from detailed bathymetric charts, are quite distinct: ~30% of LL (mean depth ~1 m) but only 3% of LV (mean depth ~3 m) is shallower than 1 m.The sediments of both lagoons are mainly composed of mud (~80%). A detailed multivariate analysis of grain-size data by EntropyMax classified the lagoon beds of LL and LV into five sedimentary facies.WRT data, computed by a hydrodynamic model, indicated different hydrological conditions in the two lagoons: LL showed a sharp west-east gradient, with a basin-wide average of ~190 days, whilst LV showed a fairly uniform distribution and a higher basin-wide average (~260 days).The distributions of sedimentary facies and water renewal times were combined in a composite map representing the distribution of environmental patterns. The approach outlined in this study can be used to improve zonation schemes by providing a hydro-morphological perspective on transitional and coastal environments
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