Document of bibliographic reference 316715

BibliographicReference record

Type
Bibliographic resource
Type of document
Journal article
BibLvlCode
AS
Title
Mud dynamics in the Port of Zeebrugge
Abstract
This paper presents the mud dynamics in the harbor basin of Zeebrugge in the Southern North Sea based on an analysis of field data. Mud is typically transported into and within the harbor basin through advection of suspended particulate matter (SPM).
Three important timescales have been identified. On the intratidal timescale, sediment import occurs from 2 h before high water to high water. Flood currents in the North Sea (directed northeastward along the Belgian coast) drive the primary gyre in the harbor mouth which is advected into the basin during rising tide. This results in water inflow near the eastern breakwater and outflow near the western breakwater. Because of sediment settling in the harbor, this results in a net import of SPM. During spring tide, the SPM flux into the harbor basin is two to four times higher than during neap tide. However, the volume of sediment removed from the port by maintenance dredging is kept constant over the spring-neap cycle, causing the amount of mud in the harbor basin to grow around spring tide conditions. On the seasonal timescale, mud volume within the harbor basin is larger in winter and reaches a minimum at the beginning of autumn. Moreover, the measured densities within the deposited mud layers are lower in winter than in summer. The most shallow point of the 210-kHz reflector is also more shallow in winter. Finally, the profile of the interface of the mud layer in the sheltered Albert II dock is more horizontal in winter than in summer, suggesting seasonal variations in the strength of the mud layer. The question to what degree the seasonal variation of thickness and density of the fluid mud layer is related to differences in the suspended sediment input, to differences in the settling rates of suspended flocs, or to the mud consolidation rate remains open however. The data do not show a strong influence of meteorological conditions (waves, freshwater inflow) on siltation rates in the harbor basin.
WebOfScience code
https://www.webofscience.com/wos/woscc/full-record/WOS:000482404300007
Bibliographic citation
Vanlede, J.; Dujardin, A.; Fettweis, M.; Van Hoestenberghe, T.; Martens, C. (2019). Mud dynamics in the Port of Zeebrugge. Ocean Dynamics 69(9): 1085-1099. https://dx.doi.org/10.1007/s10236-019-01273-3
Topic
Marine
Is peer reviewed
true
Access rights
open access
Is accessible for free
true

Authors

author
Name
Joris Vanlede
Identifier
https://orcid.org/0000-0002-7348-4603
Affiliation
Vlaamse overheid; Beleidsdomein Mobiliteit en Openbare Werken; Vlaams Ministerie Mobiliteit en Openbare Werken; Departement Mobiliteit en Openbare Werken; Waterbouwkundig Laboratorium
author
Name
Arvid Dujardin
Identifier
https://orcid.org/0009-0005-6469-0041
Affiliation
Vlaamse overheid; Beleidsdomein Mobiliteit en Openbare Werken; Vlaams Ministerie Mobiliteit en Openbare Werken; Departement Mobiliteit en Openbare Werken; Waterbouwkundig Laboratorium
author
Name
Michael Fettweis
Identifier
https://orcid.org/0000-0001-8845-6464
Affiliation
Koninklijk Belgisch Instituut voor Natuurwetenschappen; Departement Beheer van het Mariene Ecosysteem
author
Name
Thomas Van Hoestenberghe
Affiliation
Antea Belgium nv
author
Name
Chantal Martens
Identifier
https://orcid.org/0000-0003-3172-2914
Affiliation
Vlaamse overheid; Beleidsdomein Mobiliteit en Openbare Werken; Vlaams Ministerie van Mobiliteit en Openbare Werken; Departement Mobiliteit en Openbare Werken; Afdeling Maritieme Toegang

Links

referenced creativework
type
DOI
accessURL
https://dx.doi.org/10.1007/s10236-019-01273-3

thesaurus terms

term
Cohesive sediments (term code: 1681 - defined in term set: ASFA Thesaurus List)
Fluid mud (term code: 3354 - defined in term set: ASFA Thesaurus List)
Siltation (term code: 7665 - defined in term set: ASFA Thesaurus List)

geographic terms

geographic terms associated with this publication
Zeebrugge Harbour

Document metadata

date created
2019-09-11
date modified
2024-04-16