For a sperm-cell-like flagellated swimmer in an unbounded domain, several numerical models of different fidelity are considered based on the Stokes flow approximation. The models include a regularized Stokeslet method and a three-dimensional finite-element method, which serve as the benchmark solutions for several approximate models considered. The latter include the resistive force theory versions of Lighthill, and Gray and Hancock, as well as a simplified approximation based on computing the hydrodynamic forces exerted on the head and the flagellum separately. It is shown how none of the simplified models is robust enough with regards to predicting the effect of the swimmer head shape change on the swimmer dynamics. For a range of swimmer...
File "ESM3_Figure4_Rigid_Rotation.plt.gz" contains the zipped data in plt format of the top right pa...
Several microorganisms swim by a beating flagellum more rapidly in solutions with gel-like structure...
A hybrid boundary integral/slender body algorithm for modelling flagellar cell motility is presented...
In this thesis, we explore different topics in the broad field of microscale swimming, focussing on ...
This paper investigates the accuracy of the resistive-force theory (Gray and Hancock method) which i...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Three different models, relating to the study of microswimmers immersed in a low Reynolds number flui...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Eukaryotic cell swimming is frequently actuated via the flagellum, which is a slender flexible appen...
8 pages, 6 figuresInternational audienceA three-dimensional model is proposed for Chlamydomonas Rein...
Cell motility in viscous fluids is ubiquitous and affects many biological processes, including repro...
Flagellated microswimmers are ubiquitous in natural habitats. Understanding the hydrodynamic behavio...
We use a three-bead-spring model to investigate the dynamics of bi-flagellate micro-swimmers near a...
An excerpt from the simulation of 1000 swimmers with fixed undulation frequencies starting from a po...
File "ESM3_Figure4_Rigid_Rotation.plt.gz" contains the zipped data in plt format of the top right pa...
Several microorganisms swim by a beating flagellum more rapidly in solutions with gel-like structure...
A hybrid boundary integral/slender body algorithm for modelling flagellar cell motility is presented...
In this thesis, we explore different topics in the broad field of microscale swimming, focussing on ...
This paper investigates the accuracy of the resistive-force theory (Gray and Hancock method) which i...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Three different models, relating to the study of microswimmers immersed in a low Reynolds number flui...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Eukaryotic cell swimming is frequently actuated via the flagellum, which is a slender flexible appen...
8 pages, 6 figuresInternational audienceA three-dimensional model is proposed for Chlamydomonas Rein...
Cell motility in viscous fluids is ubiquitous and affects many biological processes, including repro...
Flagellated microswimmers are ubiquitous in natural habitats. Understanding the hydrodynamic behavio...
We use a three-bead-spring model to investigate the dynamics of bi-flagellate micro-swimmers near a...
An excerpt from the simulation of 1000 swimmers with fixed undulation frequencies starting from a po...
File "ESM3_Figure4_Rigid_Rotation.plt.gz" contains the zipped data in plt format of the top right pa...
Several microorganisms swim by a beating flagellum more rapidly in solutions with gel-like structure...
A hybrid boundary integral/slender body algorithm for modelling flagellar cell motility is presented...