We show that gyrotactic motility within a steady vortical flow leads to tightly clustered aggregations of microorganisms. Two dimensionless numbers, characterizing the relative swimming speed and stability against overturning by vorticity, govern the coupling between motility and flow. Exploration of parameter space reveals a striking array of patchiness regimes. Aggregations are found to form within a few overturning time scales, suggesting that vortical flows might be capable of efficiently separating species with different motility characteristics
Several metres below the coastal ocean surface there are areas of high ecological activity that cont...
Microbes play a primary role in aquatic ecosystems and biogeochemical cycles. Spatial patchiness is ...
Phytoplankton often encounter turbulence in their habitat. As most toxic phytoplankton species are m...
We show that gyrotactic motility within a steady vortical flow leads to tightly clustered aggregatio...
We show that gyrotactic motility within a steady vortical flow leads to tightly clustered aggregatio...
The motility of microorganisms is often biased by gradients in physical and chemical properties of t...
We study the effects of imposed {three-dimensional flows} on the trajectories and mixing of gyrotact...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Civil and Environmental Engineering...
Patchiness plays a fundamental role in phytoplankton ecology by dictating the rate at which individu...
In the experiment that first demonstrated gyrotactic behaviour of bottom-heavy swimming microalgae (...
Biflagellated algae swim in mean directions that are governed by their environments. For example, ma...
Fluid flow, ubiquitous in natural and man-made environments, has the potential to profoundly impact ...
Fluid flow, ubiquitous in natural and man-made environments, has the potential to profoundly impact ...
The following explores the behaviour of self propelled micro organisms throughout various flows, set...
Patchiness plays a fundamental role in phytoplankton ecology by dictating the rate at which individu...
Several metres below the coastal ocean surface there are areas of high ecological activity that cont...
Microbes play a primary role in aquatic ecosystems and biogeochemical cycles. Spatial patchiness is ...
Phytoplankton often encounter turbulence in their habitat. As most toxic phytoplankton species are m...
We show that gyrotactic motility within a steady vortical flow leads to tightly clustered aggregatio...
We show that gyrotactic motility within a steady vortical flow leads to tightly clustered aggregatio...
The motility of microorganisms is often biased by gradients in physical and chemical properties of t...
We study the effects of imposed {three-dimensional flows} on the trajectories and mixing of gyrotact...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Civil and Environmental Engineering...
Patchiness plays a fundamental role in phytoplankton ecology by dictating the rate at which individu...
In the experiment that first demonstrated gyrotactic behaviour of bottom-heavy swimming microalgae (...
Biflagellated algae swim in mean directions that are governed by their environments. For example, ma...
Fluid flow, ubiquitous in natural and man-made environments, has the potential to profoundly impact ...
Fluid flow, ubiquitous in natural and man-made environments, has the potential to profoundly impact ...
The following explores the behaviour of self propelled micro organisms throughout various flows, set...
Patchiness plays a fundamental role in phytoplankton ecology by dictating the rate at which individu...
Several metres below the coastal ocean surface there are areas of high ecological activity that cont...
Microbes play a primary role in aquatic ecosystems and biogeochemical cycles. Spatial patchiness is ...
Phytoplankton often encounter turbulence in their habitat. As most toxic phytoplankton species are m...