Chaotic advection of reacting substances: Plankton dynamics on a meandering jet

We study the spatial patterns formed by interacting populations or reacting chemicals under the influence of chaotic flows. In particular, we have considered a three-component model of plankton dynamics advected by a meandering jet. We report general results, stressing the existence of a smooth-fila...

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Published inPhysics and chemistry of the earth. Part B, Hydrology, oceans and atmosphere Vol. 26; no. 4; pp. 313 - 317
Main Authors López, C., Neufeld, Z., Hernández-García, E., Haynes, P.H.
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 2001
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Abstract We study the spatial patterns formed by interacting populations or reacting chemicals under the influence of chaotic flows. In particular, we have considered a three-component model of plankton dynamics advected by a meandering jet. We report general results, stressing the existence of a smooth-filamental transition in the concentration patterns depending on the relative strength of the stirring by the chaotic flow and the relaxation properties of planktonic dynamical system. Patterns obtained in open and closed flows are compared.
AbstractList The transport of biologically or chemically active substances by a fluid flow is a problem of great geophysical relevance. Important examples arise in the study of atmospheric advection of reactive pollutants or chemicals, such as ozone, N sub(2)O (Mahlman et al., 1984), or in the dynamics of plankton populations in ocean currents (Denman and Gargett, 1995). In the case of atmospheric chemistry, the presence of strong concentration gradients has been shown to have profound impact on global chemical time-scales (Edouard et al., 1996). On-site measurements and data analysis of the chemical or biological fields have confirmed their fractal or multifractal character (Pascual et al., 1995; Seuront et al., 1996; Bacmeister et al., 1997; Tuck and Hovde, 1999). In this paper study the spatial patterns formed by interacting populations or reacting chemicals under the influence of chaotic flows. In particular, we have considered a three-component model of plankton dynamics advected by a meandering jet. We report general results, stressing the existence of a smooth-filamental transition in the concentration patterns depending on the relative strength of the stirring by the chaotic flow and the relaxation properties of planktonic dynamical system. Patterns obtained in open and closed flows are compared. Auth. & A.R.B.
We study the spatial patterns formed by interacting populations or reacting chemicals under the influence of chaotic flows. In particular, we have considered a three-component model of plankton dynamics advected by a meandering jet. We report general results, stressing the existence of a smooth-filamental transition in the concentration patterns depending on the relative strength of the stirring by the chaotic flow and the relaxation properties of planktonic dynamical system. Patterns obtained in open and closed flows are compared.
Author López, C.
Neufeld, Z.
Haynes, P.H.
Hernández-García, E.
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  surname: Haynes
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Snippet We study the spatial patterns formed by interacting populations or reacting chemicals under the influence of chaotic flows. In particular, we have considered a...
The transport of biologically or chemically active substances by a fluid flow is a problem of great geophysical relevance. Important examples arise in the...
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SubjectTerms Brackish
Freshwater
Marine
Title Chaotic advection of reacting substances: Plankton dynamics on a meandering jet
URI https://dx.doi.org/10.1016/S1464-1909(01)00012-0
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