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20022024
most citedMultidimensional classification of hippocampal shape features discriminates Alzheimer's disease and mild cognitive impairment from normal aging

416 citations

Showing physics.flu-dynShow all

8 papers · 1 filter

physics.flu-dyn20208 cited

Spontaneous oscillations and negative-conductance transitions in microfluidic networks

Daniel J. Case, Jean-Regis Angilella, Adilson E. Motter

The tendency for flows in microfluidic systems to behave linearly poses a challenge for designing integrated flow control schemes to carry out complex fluid processing tasks. This…

physics.flu-dyn202044 cited

Braess's paradox and programmable behaviour in microfluidic networks

Daniel J. Case, Yifan Liu, Istvan Z. Kiss +2

Microfluidic systems are now being designed with precision to execute increasingly complex tasks. However, their operation often requires numerous external control devices due to t…

physics.flu-dyn201931 cited

Experimental and numerical study of the propagation of focused wave groups in the nearshore zone

Iskander Abroug, Nizar Abcha, Denys Dutykh +2

The propagation of focused wave groups in intermediate water depth and the shoaling zone is experimentally and numerically considered in this paper. The experiments are carried out…

physics.flu-dyn2019

Probability of noise-induced separatrix crossing for inertial particles in flows

Jean-Régis Angilella

The motion of weakly inertial Brownian particles, transported by steady two-dimensional fluid flows, is investigated by means of asymptotic methods. We focus on the phenomenon of n…

physics.flu-dyn20171 cited

Levitation of heavy particles against gravity in asymptotically downward flows

Jean-Regis Angilella, Daniel J. Case, Adilson E. Motter

In the fluid transport of particles, it is generally expected that heavy particles carried by a laminar fluid flow moving downward will also move downward. We establish a theory to…

physics.flu-dyn201521 cited

The role of inertia for the rotation of a nearly spherical particle in a general linear flow

F. Candelier, J. Einarsson, F. Lundell +2

We analyse the angular dynamics of a neutrally buoyant nearly spherical particle immersed in a steady general linear flow. The hydrodynamic torque acting on the particle is obtaine…