Using a multiple-scale analysis, Walker et al. (J. Fluid Mech., vol. 944, 2022, R2) obtain the long-time behaviour of a shape-changing swimmer in a Poiseuille flow. They show that the behaviour falls into one of three categories: endless tumbling at increasing distance from the midline of the flow; preserved initial behaviour of the swimmer; or convergence to upstream rheotaxis, where the swimmer is situated at the midline of the flow. Furthermore, a single swimmer-dependent constant is identified that determines which of the three behaviours is realised.</jats:p
Displacement in competitive swimming is highly dependent on fluid characteristics, since athletes u...
Biological microswimmers navigate upstream of an external flow with trajectories ranging from linear...
Bio-convection, biofilm forming or mechanics of reproduction are connected to the motility and colle...
A simple model for the motion of shape-changing swimmers in Poiseuille flow was recently proposed an...
A simple model for the motion of shape-changing swimmers in Poiseuille flow was recently proposed an...
We propose a reciprocal, self-propelled model swimmer at intermediate Reynolds numbers (Re). Our swi...
Interactions between microorganisms and their complex flowing environments are essential in many bio...
In this work, we use direct-numerical-simulation-based Eulerian-Lagrangian simulations to investigat...
The transport of motile microorganisms is strongly influenced by fluid flows that are ubiquitous in ...
Whether they be spermatozoa in cervical mucus, or {\it C. elegans} in wet soil, swimming cells often...
The role of passive body dynamics on the kinematics of swimming micro-organisms in complex fluids is...
Fluid flow is ubiquitous in many environments that form habitats for microorganisms. Therefore, it i...
Many aquatic microorganisms are able to swim. In natural environments they typically do so in the pr...
The study of the flow field resulting from suspensions of swimmers at moderate Reynolds numbers, alo...
The current work studies the dynamics of a microswimmer in pressure-driven flow of a weakly viscoela...
Displacement in competitive swimming is highly dependent on fluid characteristics, since athletes u...
Biological microswimmers navigate upstream of an external flow with trajectories ranging from linear...
Bio-convection, biofilm forming or mechanics of reproduction are connected to the motility and colle...
A simple model for the motion of shape-changing swimmers in Poiseuille flow was recently proposed an...
A simple model for the motion of shape-changing swimmers in Poiseuille flow was recently proposed an...
We propose a reciprocal, self-propelled model swimmer at intermediate Reynolds numbers (Re). Our swi...
Interactions between microorganisms and their complex flowing environments are essential in many bio...
In this work, we use direct-numerical-simulation-based Eulerian-Lagrangian simulations to investigat...
The transport of motile microorganisms is strongly influenced by fluid flows that are ubiquitous in ...
Whether they be spermatozoa in cervical mucus, or {\it C. elegans} in wet soil, swimming cells often...
The role of passive body dynamics on the kinematics of swimming micro-organisms in complex fluids is...
Fluid flow is ubiquitous in many environments that form habitats for microorganisms. Therefore, it i...
Many aquatic microorganisms are able to swim. In natural environments they typically do so in the pr...
The study of the flow field resulting from suspensions of swimmers at moderate Reynolds numbers, alo...
The current work studies the dynamics of a microswimmer in pressure-driven flow of a weakly viscoela...
Displacement in competitive swimming is highly dependent on fluid characteristics, since athletes u...
Biological microswimmers navigate upstream of an external flow with trajectories ranging from linear...
Bio-convection, biofilm forming or mechanics of reproduction are connected to the motility and colle...