Induction of flow is commonly used to control the migration of a microswimmer in a confined system such as a microchannel. The motion of a swimmer, in general, is governed by nonlinear equations due to non-trivial hydrodynamic interactions between the flow and the swimmer near a wall. This paper derives analytical expressions for the equations of motion governing a circular treadmilling swimmer in simple shear near a no-slip wall by combining the reciprocal theorem for Stokes flow with an exact solution for the dragging problem of a cylinder near a wall. We demonstrate that the reduced dynamical system possesses a Hamiltonian structure, which we use to show that the swimmer cannot migrate stably at a constant distance from a wall but only e...
This thesis sets out with a goal of answering two questions about the swimming of mi- croorganisms. ...
Using a multiple-scale analysis, Walker et al. (J. Fluid Mech., vol. 944, 2022, R2) obtain the long-...
The current work studies the dynamics of a microswimmer in pressure-driven flow of a weakly viscoela...
The locomotion of microorganisms and tiny artificial swimmers is governed by low-Reynolds-number hy...
Abstract. We investigate the behavior of a treadmilling microswimmer in a two-dimensional unbounded ...
The transport of motile microorganisms is strongly influenced by fluid flows that are ubiquitous in ...
The optimal strategy for a microscopic swimmer to migrate across a linear shear flow is discussed. T...
We study the dynamic stability of low Reynolds number swimming near a plane wall from a control-theo...
This dissertation contains original research on a range of problems involving the locomotion of diff...
Swimming, i.e., being able to advance in the absence of external forces by performing cyclic shape c...
The study of swimming micro-organisms has been of interest not just to biologists, but also to fluid...
One of the principal mechanisms by which surfaces and interfaces affect microbial life is by perturb...
Interactions between microorganisms and their complex flowing environments are essential in many bio...
Abstract. Locomotion of microorganisms and tiny artificial swimmers is governed by low-Reynolds-numb...
The motion of microorganisms as well as of tiny robotic swimmers for biomedical applications is gove...
This thesis sets out with a goal of answering two questions about the swimming of mi- croorganisms. ...
Using a multiple-scale analysis, Walker et al. (J. Fluid Mech., vol. 944, 2022, R2) obtain the long-...
The current work studies the dynamics of a microswimmer in pressure-driven flow of a weakly viscoela...
The locomotion of microorganisms and tiny artificial swimmers is governed by low-Reynolds-number hy...
Abstract. We investigate the behavior of a treadmilling microswimmer in a two-dimensional unbounded ...
The transport of motile microorganisms is strongly influenced by fluid flows that are ubiquitous in ...
The optimal strategy for a microscopic swimmer to migrate across a linear shear flow is discussed. T...
We study the dynamic stability of low Reynolds number swimming near a plane wall from a control-theo...
This dissertation contains original research on a range of problems involving the locomotion of diff...
Swimming, i.e., being able to advance in the absence of external forces by performing cyclic shape c...
The study of swimming micro-organisms has been of interest not just to biologists, but also to fluid...
One of the principal mechanisms by which surfaces and interfaces affect microbial life is by perturb...
Interactions between microorganisms and their complex flowing environments are essential in many bio...
Abstract. Locomotion of microorganisms and tiny artificial swimmers is governed by low-Reynolds-numb...
The motion of microorganisms as well as of tiny robotic swimmers for biomedical applications is gove...
This thesis sets out with a goal of answering two questions about the swimming of mi- croorganisms. ...
Using a multiple-scale analysis, Walker et al. (J. Fluid Mech., vol. 944, 2022, R2) obtain the long-...
The current work studies the dynamics of a microswimmer in pressure-driven flow of a weakly viscoela...