VLIZ
VLAAMS INSTITUUT VOOR DE ZEE
MARIEN EN KUSTGEBONDEN ONDERZOEK & BELEID IN VLAANDEREN
   
© VLIZ © VLIZ © VLIZ © VLIZ © VLIZ
 
 
  English  Sitemap  Print
U bent hier: VLIZ > datacentrum
menu1 Over het VLIZ menu2 Infoloket menu3 Zeebibliotheek menu4 Cijfers&Beleid menu5 Faciliteiten menu6 Datacentrum
   
Datacentrum
  - IMIS: Integrated Marine Information System -
log in

Personen | Instituten | Publicaties | Projecten | Datasets | Kaarten
meld een fout in dit recordmandje (0): toevoegen | tonen Print-vriendelijke versie

Assessing the parameterisation of the settling flux in a depth-integrated model of the fate of decaying and sinking particles, with application to fecal bacteria in the Scheldt EstuaryPeer reviewed article
Deleersnijder, E.; de Brauwere, A. (2010). Assessing the parameterisation of the settling flux in a depth-integrated model of the fate of decaying and sinking particles, with application to fecal bacteria in the Scheldt Estuary Environ. Fluid Mech. 10(1-2): 157-175. dx.doi.org/10.1007/s10652-009-9151-6
In: Environmental Fluid Mechanics. Springer: Dordrecht. ISSN 1567-7419, meer

Ook gepubliceerd als
  • Deleersnijder, E.; de Brauwere, A. (2010). Assessing the parameterisation of the settling flux in a depth-integrated model of the fate of decaying and sinking particles, with application to fecal bacteria in the Scheldt Estuary, in: Deleersnijder, E. et al. (Ed.) (2010). Tracer and timescale methods for understanding complex geophysical and environmental fluid flows. Environmental Fluid Mechanics, 10(Spec. Issue 1-2): pp. 157-175, meer

Beschikbaar in Auteurs 

Trefwoorden
    Marien; Brak water
Author keywords
    Settling; Mixing; Mortality; Decay; Pycnocline; Residence time; Depth-integrated model; Reactive tracer

Auteurs  Top 

Abstract
    The fate of reactive tracers is often modelled by depth-averaged equations. When integrating the depth-resolved equations, it appears that the term describing the settling of particles is dependent on the concentration just above the bottom. Because in a depth-averaged framework this quantity is not available, the settling term needs to be parameterised. The most natural choice is to make the settling flux dependent on the average concentration. This approximation is acceptable if the water column is well mixed, but these conditions are not necessarily met in real applications. Therefore, this study aims at assessing and understanding the error made by using a depth-averaged model in a range of realistic conditions. For the definition of these conditions, typical values for the Scheldt Estuary and the Dutch-Belgian coast were taken. The realistic inspiration for the reactive tracer in this study is the fecal bacterium Escherichia coli, whose own dynamics are characterised by settling and gradual decay by mortality. In an attempt to understand the relative importance of several factors like settling, mortality, mixing and stratification on the error made by a depth-averaged approach, a number of simplified test cases were investigated. It follows that, as expected, the error is acceptable if the situation is mixing-dominated. However, the effect of mortality and stratification was less obvious in advance. For instance, it appeared that errors can also be significant if settling and mortality have the same characteristic timescales. Stratification often has the effect to increase the error made by the depth-averaged model.

 Top | Auteurs 
 

 

Vlaams Instituut voor de Zee
InnovOcean site
Wandelaarkaai 7
B-8400 OOSTENDE, België
Tel: +32 [0]59/34 21 30
Fax: +32 [0]59/34 21 31
Email: info@vliz.be
   

 

Vlaamse Gemeenschap Provincie West-Vlaanderen