APS Division of Fluid Dynamics (@apsfluiddynamic) 's Twitter Profile
APS Division of Fluid Dynamics

@apsfluiddynamic

Official APS DFD Twitter account

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calendar_today27-06-2022 21:07:16

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Physical Review Fluids (@physrevfluids) 's Twitter Profile Photo

๐Ÿšจ Reminder to join us in the upcoming PRFluids Journal Club, on May 1st (8am PDT, 11am EDT, 4pm GMT+1)! Register here: apsphysics.zoom.us/meeting/registโ€ฆ

Physical Review Fluids (@physrevfluids) 's Twitter Profile Photo

๐Ÿ—“๏ธโœ๏ธ From the April issue (1) go.aps.org/4314L21 (2) go.aps.org/3RJMb9i (3) go.aps.org/3EJryXY (4) go.aps.org/4cXPtiN Have a look at the full issue from the last month here go.aps.org/4jSpj3m #fluiddynamics

๐Ÿ—“๏ธโœ๏ธ From the April issue
(1) go.aps.org/4314L21
(2) go.aps.org/3RJMb9i
(3) go.aps.org/3EJryXY 
(4) go.aps.org/4cXPtiN 


Have a look at the full issue from the last month here go.aps.org/4jSpj3m

#fluiddynamics
Physical Review Fluids (@physrevfluids) 's Twitter Profile Photo

In microfluidic networks, flow oscillations and chaos can emerge even without external modulation or deformable structures. Adilson E. Motter and colleagues show that fluid inertia drives the responsible mechanism, expanding on-chip flow control design. ๐Ÿ”— go.aps.org/4iQkeYx

In microfluidic networks, flow oscillations and chaos can emerge even without external modulation or deformable structures. <a href="/adilson_motter/">Adilson E. Motter</a> and colleagues show that fluid inertia drives the responsible mechanism, expanding on-chip flow control design.
๐Ÿ”— go.aps.org/4iQkeYx
Physical Review Fluids (@physrevfluids) 's Twitter Profile Photo

In offshore wind farms, wind-wave interactions significantly affect performance. Santoni et al. use large-eddy simulations and compare two boundary conditions, highlighting the need for realistic sea surface interactions in accurate wind farm modeling. ๐Ÿ”— go.aps.org/4m2byBf

In offshore wind farms, wind-wave interactions significantly affect performance. Santoni et al. use large-eddy simulations and compare two boundary conditions, highlighting the need for realistic sea surface interactions in accurate wind farm modeling.
๐Ÿ”— go.aps.org/4m2byBf
American Physical Society (@apsphysics) 's Twitter Profile Photo

Did you know heavy rainfall can spread disease among plant leaves โ€” turning them into catapults that launch spore-filled water droplets into the leaves above. ๐ŸŒง๏ธ ๐Ÿฆ  A new study in Physical Review Fluids details the #physics behind the spread: go.aps.org/4jWDmoy

Physical Review Fluids (@physrevfluids) 's Twitter Profile Photo

Evaporating Leidenfrost droplets can spontaneously bounce like on a trampoline. Agrawal et al. show this intermittent behavior stems from a resonance driven by vapor-layer oscillations and droplet vibrations, regardless of liquid and surface conditions. ๐Ÿ”— go.aps.org/4kejvBp

Physical Review Fluids (@physrevfluids) 's Twitter Profile Photo

How does small-scale bottom topography affect transport in the oceanic boundary layer? Using Large Eddy Simulations, Cuadras et al. show that small seabed features can enhance transport by up to 30%, highlighting the importance of flow separation. ๐Ÿ”— go.aps.org/4mezYY6

How does small-scale bottom topography affect transport in the oceanic boundary layer? Using Large Eddy Simulations, Cuadras et al. show that small seabed features can enhance transport by up to 30%, highlighting the importance of flow separation.
๐Ÿ”— go.aps.org/4mezYY6
Physical Review Fluids (@physrevfluids) 's Twitter Profile Photo

๐Ÿ“ข PRFluids Editors' suggestion: in vortical flows at high magnetic Reynolds numbers, weak magnetic fields can affect flow dynamics. Via 2D incompressible MHD simulations, Tessier et al. vary the magnetic field strength and identify 4 dynamical regimes ๐Ÿ”— go.aps.org/3SeGiBe

๐Ÿ“ข PRFluids Editors' suggestion: in vortical flows at high magnetic Reynolds numbers, weak magnetic fields can affect flow dynamics. Via 2D incompressible MHD simulations, Tessier et al. vary the magnetic field strength and identify 4 dynamical regimes
๐Ÿ”— go.aps.org/3SeGiBe
Physical Review Fluids (@physrevfluids) 's Twitter Profile Photo

๐Ÿ“ข PRFluids Editors' suggestion: Convection driven by buoyancy released during moisture condensation is common in the atmosphere. Dorel et al. present a lab experiment replicating key features of moist convection and study the instabilities that develop ๐Ÿ”— go.aps.org/3Fm5XVS

American Physical Society (@apsphysics) 's Twitter Profile Photo

Submit your abstract for one of the worldโ€™s largest conferences in #FluidDynamics and share your research with 3,500 colleagues at the annual meeting of the Division of Fluid Dynamics. Abstracts close July 25. ๐Ÿ”— go.aps.org/3FBYWjL

Submit your abstract for one of the worldโ€™s largest conferences in #FluidDynamics and share your research with 3,500 colleagues at the annual meeting of the Division of Fluid Dynamics. Abstracts close July 25.

๐Ÿ”— go.aps.org/3FBYWjL
Physical Review Fluids (@physrevfluids) 's Twitter Profile Photo

The next PR Fluids Journal Club will take place on Thursday June 26 at 11am Eastern Time, featuring Alex Menzer and colleagues discussing their paper on the efficient hydrodynamics of schooling fish (go.aps.org/4iAJwJQ). Register here: go.aps.org/440qvLQ

The next PR Fluids Journal Club will take place on Thursday June 26 at 11am Eastern Time, featuring Alex Menzer and colleagues discussing their paper on the efficient hydrodynamics of schooling fish (go.aps.org/4iAJwJQ).   Register here:  go.aps.org/440qvLQ
Physical Review Fluids (@physrevfluids) 's Twitter Profile Photo

๐Ÿ“ข PRFluids Editors' suggestion: When a beet slice sits in its own juice, a clear fringe appears. Liu et al. trace it to a surface dimple caused by wetting-induced suction at the beetโ€™s edge, set by the balance of surface tension, gravity and viscosity. ๐Ÿ”— go.aps.org/4nkPSAR