The transport of motile microorganisms is strongly influenced by fluid flows that are ubiquitous in biological environments. Here we demonstrate the impact of fluid inertia. We analyze the dynamics of a microswimmer in pressure-driven Poiseuille flow, where fluid inertia is small but non-negligible. Using perturbation theory and the reciprocal theorem, we show that in addition to the classical inertial lift of passive particles, the active nature generates a ‘swimming lift’, which we evaluate for neutral and pusher/puller-type swimmers. Accounting for fluid inertia engenders a rich spectrum of complex dynamics including bistable states, where tumbling coexists with stable centerline swimming or swinging. The dynamics is sensitive to the swi...
Both biological micro-organisms and synthetic micro-robots propel through viscous liquids to achieve...
Life under the microscope is significantly different from our experiences in the macroscopic world. ...
In the absence of inertia, a reciprocal swimmer achieves no net motion in a viscous Newtonian fluid....
The current work studies the dynamics of a microswimmer in pressure-driven flow of a weakly viscoela...
The study of the flow field resulting from suspensions of swimmers at moderate Reynolds numbers, alo...
Biological microswimmers navigate upstream of an external flow with trajectories ranging from linear...
Induction of flow is commonly used to control the migration of a microswimmer in a confined system s...
Active matter systems are continuously consuming energy from the environment to achieve different pu...
This dissertation contains original research on a range of problems involving the locomotion of diff...
Interactions between microorganisms and their complex flowing environments are essential in many bio...
Using a multiple-scale analysis, Walker et al. (J. Fluid Mech., vol. 944, 2022, R2) obtain the long-...
The interaction between swimming micro-organisms or artificial self-propelled colloids and passive (...
Microscale swimming may be intuited to be dominated by background flows, sweeping away any untethere...
In this dissertation, the effects of elasticity on hydrodynamic interactions at small scales are inv...
Suspensions of self-propelled bodies generate a unique mechanical stress owing to their motility tha...
Both biological micro-organisms and synthetic micro-robots propel through viscous liquids to achieve...
Life under the microscope is significantly different from our experiences in the macroscopic world. ...
In the absence of inertia, a reciprocal swimmer achieves no net motion in a viscous Newtonian fluid....
The current work studies the dynamics of a microswimmer in pressure-driven flow of a weakly viscoela...
The study of the flow field resulting from suspensions of swimmers at moderate Reynolds numbers, alo...
Biological microswimmers navigate upstream of an external flow with trajectories ranging from linear...
Induction of flow is commonly used to control the migration of a microswimmer in a confined system s...
Active matter systems are continuously consuming energy from the environment to achieve different pu...
This dissertation contains original research on a range of problems involving the locomotion of diff...
Interactions between microorganisms and their complex flowing environments are essential in many bio...
Using a multiple-scale analysis, Walker et al. (J. Fluid Mech., vol. 944, 2022, R2) obtain the long-...
The interaction between swimming micro-organisms or artificial self-propelled colloids and passive (...
Microscale swimming may be intuited to be dominated by background flows, sweeping away any untethere...
In this dissertation, the effects of elasticity on hydrodynamic interactions at small scales are inv...
Suspensions of self-propelled bodies generate a unique mechanical stress owing to their motility tha...
Both biological micro-organisms and synthetic micro-robots propel through viscous liquids to achieve...
Life under the microscope is significantly different from our experiences in the macroscopic world. ...
In the absence of inertia, a reciprocal swimmer achieves no net motion in a viscous Newtonian fluid....