Abstract Climate change is leading to an increase in severity, frequency, and distribution of harmful algal blooms across the globe. For many harmful algae species in eutrophic lakes, the formation of such blooms is controlled by three factors: the lake hydrodynamics, the vertical motility of the algae organisms, and the ability of the organisms to form colonies. Here, using the common cyanobacterium Microcystis aeruginosa as an example, we develop a model that accounts for both vertical transport and colony dynamics. At the core of this treatment is a model for aggregation. For this, we used Smoluchowski dynamics containing parameters related to Brownian motion, turbulent shear, differential setting, and cell‐to‐cell adhesion. To arrive at...
A very simple model for the irradiance-regulated buoyant motion of the cyanobacterium Os-cillatoria ...
This is a contribution to the special issue honoring the late John R. Blake of the University of Bir...
Wind can lead to large-scale heterogeneity in the horizontal distribution of phytoplankton in lakes....
Light-driven vertical migration is critical in dense aggregation of Microcystis aeruginosa during al...
In this research we introduce a coupled column model to simulate the vertical migration of Microcyst...
<p>The vertical migration and accumulation of <em>Microcystis</em> is an important process in water ...
In this paper, we analyzed a mathematical model of algal-grazer dynamics, including the effect of c...
Cyanobacteria often cause harmful algal blooms and release toxic substances that can harm humans and...
Algal blooms (red tide) are often observed in Hong Kong's coastal waters. These algal blooms can cau...
This study introduces a coupled flow-biology computational model based on scaling methods and dimens...
The spatial distribution of algae in lakes inter alia depends on ambient mixing conditions in the wa...
To overcome the limitations of the normal logistic equation, we aimed to improve the logistic model ...
Phytoplankton often encounter turbulence in their habitat. As most toxic phytoplankton species are m...
Microbial life pervades our planet, and many species evolved the ability to propel themselves in the...
A very simple model for the irradiance-regulated buoyant motion of the cyanobacterium Os-cillatoria ...
This is a contribution to the special issue honoring the late John R. Blake of the University of Bir...
Wind can lead to large-scale heterogeneity in the horizontal distribution of phytoplankton in lakes....
Light-driven vertical migration is critical in dense aggregation of Microcystis aeruginosa during al...
In this research we introduce a coupled column model to simulate the vertical migration of Microcyst...
<p>The vertical migration and accumulation of <em>Microcystis</em> is an important process in water ...
In this paper, we analyzed a mathematical model of algal-grazer dynamics, including the effect of c...
Cyanobacteria often cause harmful algal blooms and release toxic substances that can harm humans and...
Algal blooms (red tide) are often observed in Hong Kong's coastal waters. These algal blooms can cau...
This study introduces a coupled flow-biology computational model based on scaling methods and dimens...
The spatial distribution of algae in lakes inter alia depends on ambient mixing conditions in the wa...
To overcome the limitations of the normal logistic equation, we aimed to improve the logistic model ...
Phytoplankton often encounter turbulence in their habitat. As most toxic phytoplankton species are m...
Microbial life pervades our planet, and many species evolved the ability to propel themselves in the...
A very simple model for the irradiance-regulated buoyant motion of the cyanobacterium Os-cillatoria ...
This is a contribution to the special issue honoring the late John R. Blake of the University of Bir...
Wind can lead to large-scale heterogeneity in the horizontal distribution of phytoplankton in lakes....