We present a study on the emergence of spatial structure in plankton dynamics under the influence of stirring and mixing. A distribution of plankton is represented as a lattice of nonidentical, interacting, oscillatory plankton populations. Each population evolves according to (i) the internal biological dynamics represented by an NPZ model with population-specific phytoplankton growth rate, (ii) sub-grid-cell stirring and mixing parameterized by a nearest-neighbor coupling, and (iii) explicit advection resulting from a constant horizontal shear. Using the methods of synchronization theory, the emergent spatial structure of the simulation is investigated as a function of the coupling strength and rate of advection. Previous work using simil...
Abstract. Here we show a simple mechanism in which changes in the rate of horizontal stirring by mes...
We present an overview and extend previous results on the effects of large scale oceanic transport p...
A deterministic mechanism for the production of plankton patches within a typical medium scale ocean...
We present a study on the emergence of spatial variability, or patchiness, in biophysical simulation...
We present a study on the emergence of spatial variability, or patchiness, in biophysical simulation...
This study applies a metapopulation dynamics approach to modelling a distribution of plankton by rep...
Modelling studies of upper ocean phenomena, such as that of the spatial and temporal patchiness in p...
The observed filamental nature of plankton populations suggests that stirring plays an important rol...
We consider and contrast two mechanisms for the production of spatial pattern in an excitable medium...
Phytoplankton often encounter turbulence in their habitat. As most toxic phytoplankton species are m...
Spatiotemporal and interspecies irregularities in planktonic populations have been widely observed. ...
The quantitative description of marine systems is constrained by a major issue of scale separation: ...
Patchiness plays a fundamental role in phytoplankton ecology by dictating the rate at which individu...
The main aim of this project has been to investigate how turbulence and a patchy environment can aff...
Patchiness plays a fundamental role in phytoplankton ecology by dictating the rate at which individu...
Abstract. Here we show a simple mechanism in which changes in the rate of horizontal stirring by mes...
We present an overview and extend previous results on the effects of large scale oceanic transport p...
A deterministic mechanism for the production of plankton patches within a typical medium scale ocean...
We present a study on the emergence of spatial variability, or patchiness, in biophysical simulation...
We present a study on the emergence of spatial variability, or patchiness, in biophysical simulation...
This study applies a metapopulation dynamics approach to modelling a distribution of plankton by rep...
Modelling studies of upper ocean phenomena, such as that of the spatial and temporal patchiness in p...
The observed filamental nature of plankton populations suggests that stirring plays an important rol...
We consider and contrast two mechanisms for the production of spatial pattern in an excitable medium...
Phytoplankton often encounter turbulence in their habitat. As most toxic phytoplankton species are m...
Spatiotemporal and interspecies irregularities in planktonic populations have been widely observed. ...
The quantitative description of marine systems is constrained by a major issue of scale separation: ...
Patchiness plays a fundamental role in phytoplankton ecology by dictating the rate at which individu...
The main aim of this project has been to investigate how turbulence and a patchy environment can aff...
Patchiness plays a fundamental role in phytoplankton ecology by dictating the rate at which individu...
Abstract. Here we show a simple mechanism in which changes in the rate of horizontal stirring by mes...
We present an overview and extend previous results on the effects of large scale oceanic transport p...
A deterministic mechanism for the production of plankton patches within a typical medium scale ocean...