This thesis combines methods from statistical physics and nonlinear dynamics to advance research on the pattern formation in active fluids in several directions. In particular, it focuses on mesoscale turbulence, a state observed in microswimmer suspensions, which is characterized by the emergence of dynamic vortex patterns. The first major contribution concerns the bottom-up derivation of a frequently used continuum model of mesoscale turbulence from a set of particle-resolved stochastic equations. Utilizing the model, mesoscale turbulence is shown to induce nontrivial transport properties including a regime of optimal diffusion. The thesis then explores possible strategies of control. One of these relies on an external field that leads to stripe-like structures and can even suppress patterns entirely. The other involves geometric confinement realized by strategically placed obstacles that can reorganize the flow into a variety of ordered vortex structures. The turbulence transition inside an obstacle lattice is shown to have an intriguing analogy to an equilibrium transition in the Ising universality class. As a whole, this thesis provides important contributions to the understanding and control of turbulence in active fluids, as well as outlining exciting future directions, including applications. It includes a substantial introduction to the topic, which is suitable for newcomers to the field.
| ISBN: | 9783031676352 |
| Publication date: | 28th September 2024 |
| Author: | Henning Reinken |
| Publisher: | Springer an imprint of Springer Nature Switzerland |
| Format: | Hardback |
| Pagination: | 221 pages |
| Series: | Springer Theses |
| Genres: |
Materials science Engineering: Mechanics of fluids Cybernetics and systems theory Colloid chemistry Statistical physics |
This thesis combines methods from statistical physics and nonlinear dynamics to advance research on the pattern formation in active fluids in several directions. In particular, it focuses on mesoscale turbulence, a state observed in microswimmer suspensions, which is characterized by the emergence of dynamic vortex patterns.
Controlling Mesoscale Turbulence features in the following genres: Materials science, Engineering: Mechanics of fluids, Cybernetics and systems theory, Colloid chemistry, Statistical physics
Hardback. £179.99, down from the £199.99 cover price. Not Available.
Controlling Mesoscale Turbulence was written by Henning Reinken and published by Springer an imprint of Springer Nature Switzerland
Controlling Mesoscale Turbulence has 221 pages
Yes it is part of Springer Theses series
£179.99, reduced from £199.99. Not Available.