Unicellular bottom-heavy swimming microorganisms are usually denser than the fluid in which they swim. In shallow suspensions, the bottom heaviness results in a gravitational torque that orients the cells to swim vertically upwards in the absence of fluid flow. Swimming cells thus accumulate at the upper surface to form a concentrated layer of cells. When the cell concentration is high enough, the layer overturns to form bioconvection patterns. Thin concentrated plumes of cells descend rapidly and cells return to the upper surface in wide, slowly moving upwelling plumes. When there is fluid flow, a second viscous torque is exerted on the swimming cells. The balance between the local shear flow viscous and the gravitational torques determine...
Biflagellated algae swim in mean directions that are governed by their environments. For example, ma...
The theory of generalized Taylor dispersion for suspensions of Brownian particles is developed to st...
We conducted a three-dimensional numerical simulation of bioconvection generated by oxygen-reactive ...
Unicellular bottom-heavy swimming microorganisms are usually denser than the fluid in which they swi...
We investigate pattern formation by swimming micro-organisms (bioconvection), when their orientation...
The term bioconvection encapsulates the intricate patterns in concentration, due to hydrodynamic ins...
Bioconvection occurs as the result of the collective behaviour of many micro-organisms swimming in a...
In this paper we develop a new generic model for phototaxis in a suspension of microscopic swimming ...
This thesis concerns two aspects of microorganism behaviour. Firstly, the phenomenon of bioconvectio...
Bioconvection patterns are usually observed in the laboratory in shallow suspensions of randomly, bu...
The recent developments in using micro-organisms effectively for biofuels is the main motivation to ...
The non-linear structure of deep, stochastic, gyrotactic bioconvection is explored. A linear analysi...
The effect of gyrotaxis on the linear stability of a suspension of swimming, negatively buoyant micr...
In still water, the motion of many species of bacteria and algae is biased in a particular direction...
The complex patterns observed in experiments on suspensions of swimming cells undergoing bioconvecti...
Biflagellated algae swim in mean directions that are governed by their environments. For example, ma...
The theory of generalized Taylor dispersion for suspensions of Brownian particles is developed to st...
We conducted a three-dimensional numerical simulation of bioconvection generated by oxygen-reactive ...
Unicellular bottom-heavy swimming microorganisms are usually denser than the fluid in which they swi...
We investigate pattern formation by swimming micro-organisms (bioconvection), when their orientation...
The term bioconvection encapsulates the intricate patterns in concentration, due to hydrodynamic ins...
Bioconvection occurs as the result of the collective behaviour of many micro-organisms swimming in a...
In this paper we develop a new generic model for phototaxis in a suspension of microscopic swimming ...
This thesis concerns two aspects of microorganism behaviour. Firstly, the phenomenon of bioconvectio...
Bioconvection patterns are usually observed in the laboratory in shallow suspensions of randomly, bu...
The recent developments in using micro-organisms effectively for biofuels is the main motivation to ...
The non-linear structure of deep, stochastic, gyrotactic bioconvection is explored. A linear analysi...
The effect of gyrotaxis on the linear stability of a suspension of swimming, negatively buoyant micr...
In still water, the motion of many species of bacteria and algae is biased in a particular direction...
The complex patterns observed in experiments on suspensions of swimming cells undergoing bioconvecti...
Biflagellated algae swim in mean directions that are governed by their environments. For example, ma...
The theory of generalized Taylor dispersion for suspensions of Brownian particles is developed to st...
We conducted a three-dimensional numerical simulation of bioconvection generated by oxygen-reactive ...